Merge remote-tracking branches 'regulator/fix/doc', 'regulator/fix/max77686' and...
[deliverable/linux.git] / drivers / media / v4l2-core / videobuf2-core.c
CommitLineData
e23ccc0a
PO
1/*
2 * videobuf2-core.c - V4L2 driver helper framework
3 *
4 * Copyright (C) 2010 Samsung Electronics
5 *
95072084 6 * Author: Pawel Osciak <pawel@osciak.com>
e23ccc0a
PO
7 * Marek Szyprowski <m.szyprowski@samsung.com>
8 *
3415a89f
HV
9 * The vb2_thread implementation was based on code from videobuf-dvb.c:
10 * (c) 2004 Gerd Knorr <kraxel@bytesex.org> [SUSE Labs]
11 *
e23ccc0a
PO
12 * This program is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU General Public License as published by
14 * the Free Software Foundation.
15 */
16
17#include <linux/err.h>
18#include <linux/kernel.h>
19#include <linux/module.h>
20#include <linux/mm.h>
21#include <linux/poll.h>
22#include <linux/slab.h>
23#include <linux/sched.h>
3415a89f
HV
24#include <linux/freezer.h>
25#include <linux/kthread.h>
e23ccc0a 26
95213ceb
HV
27#include <media/v4l2-dev.h>
28#include <media/v4l2-fh.h>
29#include <media/v4l2-event.h>
ebd7c505 30#include <media/v4l2-common.h>
e23ccc0a
PO
31#include <media/videobuf2-core.h>
32
33static int debug;
34module_param(debug, int, 0644);
35
fd4354cf
HV
36#define dprintk(level, fmt, arg...) \
37 do { \
38 if (debug >= level) \
0821344d 39 pr_info("vb2: %s: " fmt, __func__, ## arg); \
e23ccc0a
PO
40 } while (0)
41
b5b4541e
HV
42#ifdef CONFIG_VIDEO_ADV_DEBUG
43
44/*
a1d36d8c
HV
45 * If advanced debugging is on, then count how often each op is called
46 * successfully, which can either be per-buffer or per-queue.
b5b4541e 47 *
a1d36d8c 48 * This makes it easy to check that the 'init' and 'cleanup'
b5b4541e
HV
49 * (and variations thereof) stay balanced.
50 */
51
a1d36d8c
HV
52#define log_memop(vb, op) \
53 dprintk(2, "call_memop(%p, %d, %s)%s\n", \
54 (vb)->vb2_queue, (vb)->v4l2_buf.index, #op, \
55 (vb)->vb2_queue->mem_ops->op ? "" : " (nop)")
56
b5b4541e
HV
57#define call_memop(vb, op, args...) \
58({ \
59 struct vb2_queue *_q = (vb)->vb2_queue; \
a1d36d8c
HV
60 int err; \
61 \
62 log_memop(vb, op); \
63 err = _q->mem_ops->op ? _q->mem_ops->op(args) : 0; \
64 if (!err) \
65 (vb)->cnt_mem_ ## op++; \
66 err; \
67})
68
69#define call_ptr_memop(vb, op, args...) \
70({ \
71 struct vb2_queue *_q = (vb)->vb2_queue; \
72 void *ptr; \
73 \
74 log_memop(vb, op); \
75 ptr = _q->mem_ops->op ? _q->mem_ops->op(args) : NULL; \
76 if (!IS_ERR_OR_NULL(ptr)) \
77 (vb)->cnt_mem_ ## op++; \
78 ptr; \
79})
80
81#define call_void_memop(vb, op, args...) \
82({ \
83 struct vb2_queue *_q = (vb)->vb2_queue; \
84 \
85 log_memop(vb, op); \
86 if (_q->mem_ops->op) \
87 _q->mem_ops->op(args); \
b5b4541e 88 (vb)->cnt_mem_ ## op++; \
b5b4541e 89})
a1d36d8c
HV
90
91#define log_qop(q, op) \
92 dprintk(2, "call_qop(%p, %s)%s\n", q, #op, \
93 (q)->ops->op ? "" : " (nop)")
b5b4541e
HV
94
95#define call_qop(q, op, args...) \
96({ \
a1d36d8c
HV
97 int err; \
98 \
99 log_qop(q, op); \
100 err = (q)->ops->op ? (q)->ops->op(args) : 0; \
101 if (!err) \
102 (q)->cnt_ ## op++; \
103 err; \
104})
105
106#define call_void_qop(q, op, args...) \
107({ \
108 log_qop(q, op); \
109 if ((q)->ops->op) \
110 (q)->ops->op(args); \
b5b4541e 111 (q)->cnt_ ## op++; \
b5b4541e 112})
a1d36d8c
HV
113
114#define log_vb_qop(vb, op, args...) \
115 dprintk(2, "call_vb_qop(%p, %d, %s)%s\n", \
116 (vb)->vb2_queue, (vb)->v4l2_buf.index, #op, \
117 (vb)->vb2_queue->ops->op ? "" : " (nop)")
b5b4541e
HV
118
119#define call_vb_qop(vb, op, args...) \
120({ \
a1d36d8c
HV
121 int err; \
122 \
123 log_vb_qop(vb, op); \
124 err = (vb)->vb2_queue->ops->op ? \
125 (vb)->vb2_queue->ops->op(args) : 0; \
126 if (!err) \
127 (vb)->cnt_ ## op++; \
128 err; \
129})
130
131#define call_void_vb_qop(vb, op, args...) \
132({ \
133 log_vb_qop(vb, op); \
134 if ((vb)->vb2_queue->ops->op) \
135 (vb)->vb2_queue->ops->op(args); \
b5b4541e 136 (vb)->cnt_ ## op++; \
b5b4541e 137})
b5b4541e
HV
138
139#else
140
141#define call_memop(vb, op, args...) \
a1d36d8c
HV
142 ((vb)->vb2_queue->mem_ops->op ? \
143 (vb)->vb2_queue->mem_ops->op(args) : 0)
144
145#define call_ptr_memop(vb, op, args...) \
146 ((vb)->vb2_queue->mem_ops->op ? \
147 (vb)->vb2_queue->mem_ops->op(args) : NULL)
148
149#define call_void_memop(vb, op, args...) \
150 do { \
151 if ((vb)->vb2_queue->mem_ops->op) \
152 (vb)->vb2_queue->mem_ops->op(args); \
153 } while (0)
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PO
154
155#define call_qop(q, op, args...) \
b5b4541e 156 ((q)->ops->op ? (q)->ops->op(args) : 0)
a1d36d8c
HV
157
158#define call_void_qop(q, op, args...) \
159 do { \
160 if ((q)->ops->op) \
161 (q)->ops->op(args); \
162 } while (0)
b5b4541e
HV
163
164#define call_vb_qop(vb, op, args...) \
165 ((vb)->vb2_queue->ops->op ? (vb)->vb2_queue->ops->op(args) : 0)
a1d36d8c
HV
166
167#define call_void_vb_qop(vb, op, args...) \
168 do { \
169 if ((vb)->vb2_queue->ops->op) \
170 (vb)->vb2_queue->ops->op(args); \
171 } while (0)
b5b4541e
HV
172
173#endif
e23ccc0a 174
f1343281 175/* Flags that are set by the vb2 core */
1b18e7a0 176#define V4L2_BUFFER_MASK_FLAGS (V4L2_BUF_FLAG_MAPPED | V4L2_BUF_FLAG_QUEUED | \
2d86401c 177 V4L2_BUF_FLAG_DONE | V4L2_BUF_FLAG_ERROR | \
1b18e7a0
SA
178 V4L2_BUF_FLAG_PREPARED | \
179 V4L2_BUF_FLAG_TIMESTAMP_MASK)
f1343281
HV
180/* Output buffer flags that should be passed on to the driver */
181#define V4L2_BUFFER_OUT_FLAGS (V4L2_BUF_FLAG_PFRAME | V4L2_BUF_FLAG_BFRAME | \
182 V4L2_BUF_FLAG_KEYFRAME | V4L2_BUF_FLAG_TIMECODE)
ea42c8ec 183
fb64dca8
HV
184static void __vb2_queue_cancel(struct vb2_queue *q);
185
e23ccc0a
PO
186/**
187 * __vb2_buf_mem_alloc() - allocate video memory for the given buffer
188 */
c1426bc7 189static int __vb2_buf_mem_alloc(struct vb2_buffer *vb)
e23ccc0a
PO
190{
191 struct vb2_queue *q = vb->vb2_queue;
d935c57e
HV
192 enum dma_data_direction dma_dir =
193 V4L2_TYPE_IS_OUTPUT(q->type) ? DMA_TO_DEVICE : DMA_FROM_DEVICE;
e23ccc0a
PO
194 void *mem_priv;
195 int plane;
196
7f841459
MCC
197 /*
198 * Allocate memory for all planes in this buffer
199 * NOTE: mmapped areas should be page aligned
200 */
e23ccc0a 201 for (plane = 0; plane < vb->num_planes; ++plane) {
7f841459
MCC
202 unsigned long size = PAGE_ALIGN(q->plane_sizes[plane]);
203
a1d36d8c 204 mem_priv = call_ptr_memop(vb, alloc, q->alloc_ctx[plane],
d935c57e 205 size, dma_dir, q->gfp_flags);
62a79436 206 if (IS_ERR_OR_NULL(mem_priv))
e23ccc0a
PO
207 goto free;
208
209 /* Associate allocator private data with this plane */
210 vb->planes[plane].mem_priv = mem_priv;
c1426bc7 211 vb->v4l2_planes[plane].length = q->plane_sizes[plane];
e23ccc0a
PO
212 }
213
214 return 0;
215free:
216 /* Free already allocated memory if one of the allocations failed */
a00d0266 217 for (; plane > 0; --plane) {
a1d36d8c 218 call_void_memop(vb, put, vb->planes[plane - 1].mem_priv);
a00d0266
MS
219 vb->planes[plane - 1].mem_priv = NULL;
220 }
e23ccc0a
PO
221
222 return -ENOMEM;
223}
224
225/**
226 * __vb2_buf_mem_free() - free memory of the given buffer
227 */
228static void __vb2_buf_mem_free(struct vb2_buffer *vb)
229{
e23ccc0a
PO
230 unsigned int plane;
231
232 for (plane = 0; plane < vb->num_planes; ++plane) {
a1d36d8c 233 call_void_memop(vb, put, vb->planes[plane].mem_priv);
e23ccc0a 234 vb->planes[plane].mem_priv = NULL;
3050040b 235 dprintk(3, "freed plane %d of buffer %d\n", plane,
a00d0266 236 vb->v4l2_buf.index);
e23ccc0a
PO
237 }
238}
239
240/**
241 * __vb2_buf_userptr_put() - release userspace memory associated with
242 * a USERPTR buffer
243 */
244static void __vb2_buf_userptr_put(struct vb2_buffer *vb)
245{
e23ccc0a
PO
246 unsigned int plane;
247
248 for (plane = 0; plane < vb->num_planes; ++plane) {
a00d0266 249 if (vb->planes[plane].mem_priv)
a1d36d8c 250 call_void_memop(vb, put_userptr, vb->planes[plane].mem_priv);
a00d0266 251 vb->planes[plane].mem_priv = NULL;
e23ccc0a
PO
252 }
253}
254
c5384048
SS
255/**
256 * __vb2_plane_dmabuf_put() - release memory associated with
257 * a DMABUF shared plane
258 */
b5b4541e 259static void __vb2_plane_dmabuf_put(struct vb2_buffer *vb, struct vb2_plane *p)
c5384048
SS
260{
261 if (!p->mem_priv)
262 return;
263
264 if (p->dbuf_mapped)
a1d36d8c 265 call_void_memop(vb, unmap_dmabuf, p->mem_priv);
c5384048 266
a1d36d8c 267 call_void_memop(vb, detach_dmabuf, p->mem_priv);
c5384048
SS
268 dma_buf_put(p->dbuf);
269 memset(p, 0, sizeof(*p));
270}
271
272/**
273 * __vb2_buf_dmabuf_put() - release memory associated with
274 * a DMABUF shared buffer
275 */
276static void __vb2_buf_dmabuf_put(struct vb2_buffer *vb)
277{
c5384048
SS
278 unsigned int plane;
279
280 for (plane = 0; plane < vb->num_planes; ++plane)
b5b4541e 281 __vb2_plane_dmabuf_put(vb, &vb->planes[plane]);
c5384048
SS
282}
283
a5e3d743
HV
284/**
285 * __setup_lengths() - setup initial lengths for every plane in
286 * every buffer on the queue
287 */
288static void __setup_lengths(struct vb2_queue *q, unsigned int n)
289{
290 unsigned int buffer, plane;
291 struct vb2_buffer *vb;
292
293 for (buffer = q->num_buffers; buffer < q->num_buffers + n; ++buffer) {
294 vb = q->bufs[buffer];
295 if (!vb)
296 continue;
297
298 for (plane = 0; plane < vb->num_planes; ++plane)
299 vb->v4l2_planes[plane].length = q->plane_sizes[plane];
300 }
301}
302
e23ccc0a
PO
303/**
304 * __setup_offsets() - setup unique offsets ("cookies") for every plane in
305 * every buffer on the queue
306 */
2d86401c 307static void __setup_offsets(struct vb2_queue *q, unsigned int n)
e23ccc0a
PO
308{
309 unsigned int buffer, plane;
310 struct vb2_buffer *vb;
2d86401c 311 unsigned long off;
e23ccc0a 312
2d86401c
GL
313 if (q->num_buffers) {
314 struct v4l2_plane *p;
315 vb = q->bufs[q->num_buffers - 1];
316 p = &vb->v4l2_planes[vb->num_planes - 1];
317 off = PAGE_ALIGN(p->m.mem_offset + p->length);
318 } else {
319 off = 0;
320 }
321
322 for (buffer = q->num_buffers; buffer < q->num_buffers + n; ++buffer) {
e23ccc0a
PO
323 vb = q->bufs[buffer];
324 if (!vb)
325 continue;
326
327 for (plane = 0; plane < vb->num_planes; ++plane) {
328 vb->v4l2_planes[plane].m.mem_offset = off;
329
3050040b 330 dprintk(3, "buffer %d, plane %d offset 0x%08lx\n",
e23ccc0a
PO
331 buffer, plane, off);
332
333 off += vb->v4l2_planes[plane].length;
334 off = PAGE_ALIGN(off);
335 }
336 }
337}
338
339/**
340 * __vb2_queue_alloc() - allocate videobuf buffer structures and (for MMAP type)
341 * video buffer memory for all buffers/planes on the queue and initializes the
342 * queue
343 *
344 * Returns the number of buffers successfully allocated.
345 */
346static int __vb2_queue_alloc(struct vb2_queue *q, enum v4l2_memory memory,
c1426bc7 347 unsigned int num_buffers, unsigned int num_planes)
e23ccc0a
PO
348{
349 unsigned int buffer;
350 struct vb2_buffer *vb;
351 int ret;
352
353 for (buffer = 0; buffer < num_buffers; ++buffer) {
354 /* Allocate videobuf buffer structures */
355 vb = kzalloc(q->buf_struct_size, GFP_KERNEL);
356 if (!vb) {
3050040b 357 dprintk(1, "memory alloc for buffer struct failed\n");
e23ccc0a
PO
358 break;
359 }
360
361 /* Length stores number of planes for multiplanar buffers */
362 if (V4L2_TYPE_IS_MULTIPLANAR(q->type))
363 vb->v4l2_buf.length = num_planes;
364
365 vb->state = VB2_BUF_STATE_DEQUEUED;
366 vb->vb2_queue = q;
367 vb->num_planes = num_planes;
2d86401c 368 vb->v4l2_buf.index = q->num_buffers + buffer;
e23ccc0a
PO
369 vb->v4l2_buf.type = q->type;
370 vb->v4l2_buf.memory = memory;
371
372 /* Allocate video buffer memory for the MMAP type */
373 if (memory == V4L2_MEMORY_MMAP) {
c1426bc7 374 ret = __vb2_buf_mem_alloc(vb);
e23ccc0a 375 if (ret) {
3050040b 376 dprintk(1, "failed allocating memory for "
e23ccc0a
PO
377 "buffer %d\n", buffer);
378 kfree(vb);
379 break;
380 }
381 /*
382 * Call the driver-provided buffer initialization
383 * callback, if given. An error in initialization
384 * results in queue setup failure.
385 */
b5b4541e 386 ret = call_vb_qop(vb, buf_init, vb);
e23ccc0a 387 if (ret) {
3050040b 388 dprintk(1, "buffer %d %p initialization"
e23ccc0a
PO
389 " failed\n", buffer, vb);
390 __vb2_buf_mem_free(vb);
391 kfree(vb);
392 break;
393 }
394 }
395
2d86401c 396 q->bufs[q->num_buffers + buffer] = vb;
e23ccc0a
PO
397 }
398
a5e3d743 399 __setup_lengths(q, buffer);
dc77523c
PZ
400 if (memory == V4L2_MEMORY_MMAP)
401 __setup_offsets(q, buffer);
e23ccc0a 402
3050040b 403 dprintk(1, "allocated %d buffers, %d plane(s) each\n",
2d86401c 404 buffer, num_planes);
e23ccc0a
PO
405
406 return buffer;
407}
408
409/**
410 * __vb2_free_mem() - release all video buffer memory for a given queue
411 */
2d86401c 412static void __vb2_free_mem(struct vb2_queue *q, unsigned int buffers)
e23ccc0a
PO
413{
414 unsigned int buffer;
415 struct vb2_buffer *vb;
416
2d86401c
GL
417 for (buffer = q->num_buffers - buffers; buffer < q->num_buffers;
418 ++buffer) {
e23ccc0a
PO
419 vb = q->bufs[buffer];
420 if (!vb)
421 continue;
422
423 /* Free MMAP buffers or release USERPTR buffers */
424 if (q->memory == V4L2_MEMORY_MMAP)
425 __vb2_buf_mem_free(vb);
c5384048
SS
426 else if (q->memory == V4L2_MEMORY_DMABUF)
427 __vb2_buf_dmabuf_put(vb);
e23ccc0a
PO
428 else
429 __vb2_buf_userptr_put(vb);
430 }
431}
432
433/**
2d86401c
GL
434 * __vb2_queue_free() - free buffers at the end of the queue - video memory and
435 * related information, if no buffers are left return the queue to an
436 * uninitialized state. Might be called even if the queue has already been freed.
e23ccc0a 437 */
63faabfd 438static int __vb2_queue_free(struct vb2_queue *q, unsigned int buffers)
e23ccc0a
PO
439{
440 unsigned int buffer;
441
63faabfd
HV
442 /*
443 * Sanity check: when preparing a buffer the queue lock is released for
444 * a short while (see __buf_prepare for the details), which would allow
445 * a race with a reqbufs which can call this function. Removing the
446 * buffers from underneath __buf_prepare is obviously a bad idea, so we
447 * check if any of the buffers is in the state PREPARING, and if so we
448 * just return -EAGAIN.
449 */
450 for (buffer = q->num_buffers - buffers; buffer < q->num_buffers;
451 ++buffer) {
452 if (q->bufs[buffer] == NULL)
453 continue;
454 if (q->bufs[buffer]->state == VB2_BUF_STATE_PREPARING) {
fd4354cf 455 dprintk(1, "preparing buffers, cannot free\n");
63faabfd
HV
456 return -EAGAIN;
457 }
458 }
459
e23ccc0a 460 /* Call driver-provided cleanup function for each buffer, if provided */
b5b4541e
HV
461 for (buffer = q->num_buffers - buffers; buffer < q->num_buffers;
462 ++buffer) {
256f3162
HV
463 struct vb2_buffer *vb = q->bufs[buffer];
464
465 if (vb && vb->planes[0].mem_priv)
a1d36d8c 466 call_void_vb_qop(vb, buf_cleanup, vb);
e23ccc0a
PO
467 }
468
469 /* Release video buffer memory */
2d86401c 470 __vb2_free_mem(q, buffers);
e23ccc0a 471
b5b4541e
HV
472#ifdef CONFIG_VIDEO_ADV_DEBUG
473 /*
474 * Check that all the calls were balances during the life-time of this
475 * queue. If not (or if the debug level is 1 or up), then dump the
476 * counters to the kernel log.
477 */
478 if (q->num_buffers) {
479 bool unbalanced = q->cnt_start_streaming != q->cnt_stop_streaming ||
480 q->cnt_wait_prepare != q->cnt_wait_finish;
481
482 if (unbalanced || debug) {
483 pr_info("vb2: counters for queue %p:%s\n", q,
484 unbalanced ? " UNBALANCED!" : "");
485 pr_info("vb2: setup: %u start_streaming: %u stop_streaming: %u\n",
486 q->cnt_queue_setup, q->cnt_start_streaming,
487 q->cnt_stop_streaming);
488 pr_info("vb2: wait_prepare: %u wait_finish: %u\n",
489 q->cnt_wait_prepare, q->cnt_wait_finish);
490 }
491 q->cnt_queue_setup = 0;
492 q->cnt_wait_prepare = 0;
493 q->cnt_wait_finish = 0;
494 q->cnt_start_streaming = 0;
495 q->cnt_stop_streaming = 0;
496 }
497 for (buffer = 0; buffer < q->num_buffers; ++buffer) {
498 struct vb2_buffer *vb = q->bufs[buffer];
499 bool unbalanced = vb->cnt_mem_alloc != vb->cnt_mem_put ||
500 vb->cnt_mem_prepare != vb->cnt_mem_finish ||
501 vb->cnt_mem_get_userptr != vb->cnt_mem_put_userptr ||
502 vb->cnt_mem_attach_dmabuf != vb->cnt_mem_detach_dmabuf ||
503 vb->cnt_mem_map_dmabuf != vb->cnt_mem_unmap_dmabuf ||
504 vb->cnt_buf_queue != vb->cnt_buf_done ||
505 vb->cnt_buf_prepare != vb->cnt_buf_finish ||
506 vb->cnt_buf_init != vb->cnt_buf_cleanup;
507
508 if (unbalanced || debug) {
509 pr_info("vb2: counters for queue %p, buffer %d:%s\n",
510 q, buffer, unbalanced ? " UNBALANCED!" : "");
511 pr_info("vb2: buf_init: %u buf_cleanup: %u buf_prepare: %u buf_finish: %u\n",
512 vb->cnt_buf_init, vb->cnt_buf_cleanup,
513 vb->cnt_buf_prepare, vb->cnt_buf_finish);
514 pr_info("vb2: buf_queue: %u buf_done: %u\n",
515 vb->cnt_buf_queue, vb->cnt_buf_done);
516 pr_info("vb2: alloc: %u put: %u prepare: %u finish: %u mmap: %u\n",
517 vb->cnt_mem_alloc, vb->cnt_mem_put,
518 vb->cnt_mem_prepare, vb->cnt_mem_finish,
519 vb->cnt_mem_mmap);
520 pr_info("vb2: get_userptr: %u put_userptr: %u\n",
521 vb->cnt_mem_get_userptr, vb->cnt_mem_put_userptr);
522 pr_info("vb2: attach_dmabuf: %u detach_dmabuf: %u map_dmabuf: %u unmap_dmabuf: %u\n",
523 vb->cnt_mem_attach_dmabuf, vb->cnt_mem_detach_dmabuf,
524 vb->cnt_mem_map_dmabuf, vb->cnt_mem_unmap_dmabuf);
525 pr_info("vb2: get_dmabuf: %u num_users: %u vaddr: %u cookie: %u\n",
526 vb->cnt_mem_get_dmabuf,
527 vb->cnt_mem_num_users,
528 vb->cnt_mem_vaddr,
529 vb->cnt_mem_cookie);
530 }
531 }
532#endif
533
e23ccc0a 534 /* Free videobuf buffers */
2d86401c
GL
535 for (buffer = q->num_buffers - buffers; buffer < q->num_buffers;
536 ++buffer) {
e23ccc0a
PO
537 kfree(q->bufs[buffer]);
538 q->bufs[buffer] = NULL;
539 }
540
2d86401c 541 q->num_buffers -= buffers;
a7afcacc 542 if (!q->num_buffers) {
2d86401c 543 q->memory = 0;
a7afcacc
HV
544 INIT_LIST_HEAD(&q->queued_list);
545 }
63faabfd 546 return 0;
e23ccc0a
PO
547}
548
549/**
550 * __verify_planes_array() - verify that the planes array passed in struct
551 * v4l2_buffer from userspace can be safely used
552 */
2d86401c 553static int __verify_planes_array(struct vb2_buffer *vb, const struct v4l2_buffer *b)
e23ccc0a 554{
32a77260
HV
555 if (!V4L2_TYPE_IS_MULTIPLANAR(b->type))
556 return 0;
557
e23ccc0a
PO
558 /* Is memory for copying plane information present? */
559 if (NULL == b->m.planes) {
3050040b 560 dprintk(1, "multi-planar buffer passed but "
e23ccc0a
PO
561 "planes array not provided\n");
562 return -EINVAL;
563 }
564
565 if (b->length < vb->num_planes || b->length > VIDEO_MAX_PLANES) {
3050040b 566 dprintk(1, "incorrect planes array length, "
e23ccc0a
PO
567 "expected %d, got %d\n", vb->num_planes, b->length);
568 return -EINVAL;
569 }
570
571 return 0;
572}
573
8023ed09
LP
574/**
575 * __verify_length() - Verify that the bytesused value for each plane fits in
576 * the plane length and that the data offset doesn't exceed the bytesused value.
577 */
578static int __verify_length(struct vb2_buffer *vb, const struct v4l2_buffer *b)
579{
580 unsigned int length;
8a75ffb8 581 unsigned int bytesused;
8023ed09
LP
582 unsigned int plane;
583
584 if (!V4L2_TYPE_IS_OUTPUT(b->type))
585 return 0;
586
587 if (V4L2_TYPE_IS_MULTIPLANAR(b->type)) {
588 for (plane = 0; plane < vb->num_planes; ++plane) {
8a75ffb8
HV
589 length = (b->memory == V4L2_MEMORY_USERPTR ||
590 b->memory == V4L2_MEMORY_DMABUF)
8023ed09
LP
591 ? b->m.planes[plane].length
592 : vb->v4l2_planes[plane].length;
8a75ffb8
HV
593 bytesused = b->m.planes[plane].bytesused
594 ? b->m.planes[plane].bytesused : length;
8023ed09
LP
595
596 if (b->m.planes[plane].bytesused > length)
597 return -EINVAL;
3c5c23c5
SN
598
599 if (b->m.planes[plane].data_offset > 0 &&
8a75ffb8 600 b->m.planes[plane].data_offset >= bytesused)
8023ed09
LP
601 return -EINVAL;
602 }
603 } else {
604 length = (b->memory == V4L2_MEMORY_USERPTR)
605 ? b->length : vb->v4l2_planes[0].length;
8a75ffb8 606 bytesused = b->bytesused ? b->bytesused : length;
8023ed09
LP
607
608 if (b->bytesused > length)
609 return -EINVAL;
610 }
611
612 return 0;
613}
614
25a27d91
MS
615/**
616 * __buffer_in_use() - return true if the buffer is in use and
617 * the queue cannot be freed (by the means of REQBUFS(0)) call
618 */
619static bool __buffer_in_use(struct vb2_queue *q, struct vb2_buffer *vb)
620{
621 unsigned int plane;
622 for (plane = 0; plane < vb->num_planes; ++plane) {
2c2dd6ac 623 void *mem_priv = vb->planes[plane].mem_priv;
25a27d91
MS
624 /*
625 * If num_users() has not been provided, call_memop
626 * will return 0, apparently nobody cares about this
627 * case anyway. If num_users() returns more than 1,
628 * we are not the only user of the plane's memory.
629 */
b5b4541e 630 if (mem_priv && call_memop(vb, num_users, mem_priv) > 1)
25a27d91
MS
631 return true;
632 }
633 return false;
634}
635
636/**
637 * __buffers_in_use() - return true if any buffers on the queue are in use and
638 * the queue cannot be freed (by the means of REQBUFS(0)) call
639 */
640static bool __buffers_in_use(struct vb2_queue *q)
641{
642 unsigned int buffer;
643 for (buffer = 0; buffer < q->num_buffers; ++buffer) {
644 if (__buffer_in_use(q, q->bufs[buffer]))
645 return true;
646 }
647 return false;
648}
649
e23ccc0a
PO
650/**
651 * __fill_v4l2_buffer() - fill in a struct v4l2_buffer with information to be
652 * returned to userspace
653 */
32a77260 654static void __fill_v4l2_buffer(struct vb2_buffer *vb, struct v4l2_buffer *b)
e23ccc0a
PO
655{
656 struct vb2_queue *q = vb->vb2_queue;
e23ccc0a 657
2b719d7b 658 /* Copy back data such as timestamp, flags, etc. */
e23ccc0a 659 memcpy(b, &vb->v4l2_buf, offsetof(struct v4l2_buffer, m));
2b719d7b 660 b->reserved2 = vb->v4l2_buf.reserved2;
e23ccc0a
PO
661 b->reserved = vb->v4l2_buf.reserved;
662
663 if (V4L2_TYPE_IS_MULTIPLANAR(q->type)) {
e23ccc0a
PO
664 /*
665 * Fill in plane-related data if userspace provided an array
32a77260 666 * for it. The caller has already verified memory and size.
e23ccc0a 667 */
3c0b6061 668 b->length = vb->num_planes;
e23ccc0a
PO
669 memcpy(b->m.planes, vb->v4l2_planes,
670 b->length * sizeof(struct v4l2_plane));
671 } else {
672 /*
673 * We use length and offset in v4l2_planes array even for
674 * single-planar buffers, but userspace does not.
675 */
676 b->length = vb->v4l2_planes[0].length;
677 b->bytesused = vb->v4l2_planes[0].bytesused;
678 if (q->memory == V4L2_MEMORY_MMAP)
679 b->m.offset = vb->v4l2_planes[0].m.mem_offset;
680 else if (q->memory == V4L2_MEMORY_USERPTR)
681 b->m.userptr = vb->v4l2_planes[0].m.userptr;
c5384048
SS
682 else if (q->memory == V4L2_MEMORY_DMABUF)
683 b->m.fd = vb->v4l2_planes[0].m.fd;
e23ccc0a
PO
684 }
685
ea42c8ec
MS
686 /*
687 * Clear any buffer state related flags.
688 */
1b18e7a0 689 b->flags &= ~V4L2_BUFFER_MASK_FLAGS;
7ce6fd8f
SA
690 b->flags |= q->timestamp_flags & V4L2_BUF_FLAG_TIMESTAMP_MASK;
691 if ((q->timestamp_flags & V4L2_BUF_FLAG_TIMESTAMP_MASK) !=
692 V4L2_BUF_FLAG_TIMESTAMP_COPY) {
693 /*
694 * For non-COPY timestamps, drop timestamp source bits
695 * and obtain the timestamp source from the queue.
696 */
697 b->flags &= ~V4L2_BUF_FLAG_TSTAMP_SRC_MASK;
698 b->flags |= q->timestamp_flags & V4L2_BUF_FLAG_TSTAMP_SRC_MASK;
699 }
e23ccc0a
PO
700
701 switch (vb->state) {
702 case VB2_BUF_STATE_QUEUED:
703 case VB2_BUF_STATE_ACTIVE:
704 b->flags |= V4L2_BUF_FLAG_QUEUED;
705 break;
706 case VB2_BUF_STATE_ERROR:
707 b->flags |= V4L2_BUF_FLAG_ERROR;
708 /* fall through */
709 case VB2_BUF_STATE_DONE:
710 b->flags |= V4L2_BUF_FLAG_DONE;
711 break;
ebc087d0 712 case VB2_BUF_STATE_PREPARED:
2d86401c
GL
713 b->flags |= V4L2_BUF_FLAG_PREPARED;
714 break;
b18a8ff2 715 case VB2_BUF_STATE_PREPARING:
2d86401c 716 case VB2_BUF_STATE_DEQUEUED:
e23ccc0a
PO
717 /* nothing */
718 break;
719 }
720
25a27d91 721 if (__buffer_in_use(q, vb))
e23ccc0a 722 b->flags |= V4L2_BUF_FLAG_MAPPED;
e23ccc0a
PO
723}
724
725/**
726 * vb2_querybuf() - query video buffer information
727 * @q: videobuf queue
728 * @b: buffer struct passed from userspace to vidioc_querybuf handler
729 * in driver
730 *
731 * Should be called from vidioc_querybuf ioctl handler in driver.
732 * This function will verify the passed v4l2_buffer structure and fill the
733 * relevant information for the userspace.
734 *
735 * The return values from this function are intended to be directly returned
736 * from vidioc_querybuf handler in driver.
737 */
738int vb2_querybuf(struct vb2_queue *q, struct v4l2_buffer *b)
739{
740 struct vb2_buffer *vb;
32a77260 741 int ret;
e23ccc0a
PO
742
743 if (b->type != q->type) {
fd4354cf 744 dprintk(1, "wrong buffer type\n");
e23ccc0a
PO
745 return -EINVAL;
746 }
747
748 if (b->index >= q->num_buffers) {
fd4354cf 749 dprintk(1, "buffer index out of range\n");
e23ccc0a
PO
750 return -EINVAL;
751 }
752 vb = q->bufs[b->index];
32a77260
HV
753 ret = __verify_planes_array(vb, b);
754 if (!ret)
755 __fill_v4l2_buffer(vb, b);
756 return ret;
e23ccc0a
PO
757}
758EXPORT_SYMBOL(vb2_querybuf);
759
760/**
761 * __verify_userptr_ops() - verify that all memory operations required for
762 * USERPTR queue type have been provided
763 */
764static int __verify_userptr_ops(struct vb2_queue *q)
765{
766 if (!(q->io_modes & VB2_USERPTR) || !q->mem_ops->get_userptr ||
767 !q->mem_ops->put_userptr)
768 return -EINVAL;
769
770 return 0;
771}
772
773/**
774 * __verify_mmap_ops() - verify that all memory operations required for
775 * MMAP queue type have been provided
776 */
777static int __verify_mmap_ops(struct vb2_queue *q)
778{
779 if (!(q->io_modes & VB2_MMAP) || !q->mem_ops->alloc ||
780 !q->mem_ops->put || !q->mem_ops->mmap)
781 return -EINVAL;
782
783 return 0;
784}
785
c5384048
SS
786/**
787 * __verify_dmabuf_ops() - verify that all memory operations required for
788 * DMABUF queue type have been provided
789 */
790static int __verify_dmabuf_ops(struct vb2_queue *q)
791{
792 if (!(q->io_modes & VB2_DMABUF) || !q->mem_ops->attach_dmabuf ||
793 !q->mem_ops->detach_dmabuf || !q->mem_ops->map_dmabuf ||
794 !q->mem_ops->unmap_dmabuf)
795 return -EINVAL;
796
797 return 0;
798}
799
e23ccc0a 800/**
37d9ed94
HV
801 * __verify_memory_type() - Check whether the memory type and buffer type
802 * passed to a buffer operation are compatible with the queue.
803 */
804static int __verify_memory_type(struct vb2_queue *q,
805 enum v4l2_memory memory, enum v4l2_buf_type type)
806{
c5384048
SS
807 if (memory != V4L2_MEMORY_MMAP && memory != V4L2_MEMORY_USERPTR &&
808 memory != V4L2_MEMORY_DMABUF) {
fd4354cf 809 dprintk(1, "unsupported memory type\n");
37d9ed94
HV
810 return -EINVAL;
811 }
812
813 if (type != q->type) {
fd4354cf 814 dprintk(1, "requested type is incorrect\n");
37d9ed94
HV
815 return -EINVAL;
816 }
817
818 /*
819 * Make sure all the required memory ops for given memory type
820 * are available.
821 */
822 if (memory == V4L2_MEMORY_MMAP && __verify_mmap_ops(q)) {
fd4354cf 823 dprintk(1, "MMAP for current setup unsupported\n");
37d9ed94
HV
824 return -EINVAL;
825 }
826
827 if (memory == V4L2_MEMORY_USERPTR && __verify_userptr_ops(q)) {
fd4354cf 828 dprintk(1, "USERPTR for current setup unsupported\n");
37d9ed94
HV
829 return -EINVAL;
830 }
831
c5384048 832 if (memory == V4L2_MEMORY_DMABUF && __verify_dmabuf_ops(q)) {
fd4354cf 833 dprintk(1, "DMABUF for current setup unsupported\n");
c5384048
SS
834 return -EINVAL;
835 }
836
37d9ed94
HV
837 /*
838 * Place the busy tests at the end: -EBUSY can be ignored when
839 * create_bufs is called with count == 0, but count == 0 should still
840 * do the memory and type validation.
841 */
74753cff 842 if (vb2_fileio_is_active(q)) {
fd4354cf 843 dprintk(1, "file io in progress\n");
37d9ed94
HV
844 return -EBUSY;
845 }
846 return 0;
847}
848
849/**
850 * __reqbufs() - Initiate streaming
e23ccc0a
PO
851 * @q: videobuf2 queue
852 * @req: struct passed from userspace to vidioc_reqbufs handler in driver
853 *
854 * Should be called from vidioc_reqbufs ioctl handler of a driver.
855 * This function:
856 * 1) verifies streaming parameters passed from the userspace,
857 * 2) sets up the queue,
858 * 3) negotiates number of buffers and planes per buffer with the driver
859 * to be used during streaming,
860 * 4) allocates internal buffer structures (struct vb2_buffer), according to
861 * the agreed parameters,
862 * 5) for MMAP memory type, allocates actual video memory, using the
863 * memory handling/allocation routines provided during queue initialization
864 *
865 * If req->count is 0, all the memory will be freed instead.
866 * If the queue has been allocated previously (by a previous vb2_reqbufs) call
867 * and the queue is not busy, memory will be reallocated.
868 *
869 * The return values from this function are intended to be directly returned
870 * from vidioc_reqbufs handler in driver.
871 */
37d9ed94 872static int __reqbufs(struct vb2_queue *q, struct v4l2_requestbuffers *req)
e23ccc0a 873{
2d86401c 874 unsigned int num_buffers, allocated_buffers, num_planes = 0;
37d9ed94 875 int ret;
e23ccc0a
PO
876
877 if (q->streaming) {
fd4354cf 878 dprintk(1, "streaming active\n");
e23ccc0a
PO
879 return -EBUSY;
880 }
881
29e3fbd8 882 if (req->count == 0 || q->num_buffers != 0 || q->memory != req->memory) {
e23ccc0a
PO
883 /*
884 * We already have buffers allocated, so first check if they
885 * are not in use and can be freed.
886 */
f035eb4e 887 mutex_lock(&q->mmap_lock);
e23ccc0a 888 if (q->memory == V4L2_MEMORY_MMAP && __buffers_in_use(q)) {
f035eb4e 889 mutex_unlock(&q->mmap_lock);
fd4354cf 890 dprintk(1, "memory in use, cannot free\n");
e23ccc0a
PO
891 return -EBUSY;
892 }
893
fb64dca8
HV
894 /*
895 * Call queue_cancel to clean up any buffers in the PREPARED or
896 * QUEUED state which is possible if buffers were prepared or
897 * queued without ever calling STREAMON.
898 */
899 __vb2_queue_cancel(q);
63faabfd 900 ret = __vb2_queue_free(q, q->num_buffers);
f035eb4e 901 mutex_unlock(&q->mmap_lock);
63faabfd
HV
902 if (ret)
903 return ret;
29e3fbd8
MS
904
905 /*
906 * In case of REQBUFS(0) return immediately without calling
907 * driver's queue_setup() callback and allocating resources.
908 */
909 if (req->count == 0)
910 return 0;
e23ccc0a
PO
911 }
912
913 /*
914 * Make sure the requested values and current defaults are sane.
915 */
916 num_buffers = min_t(unsigned int, req->count, VIDEO_MAX_FRAME);
4cf743de 917 num_buffers = max_t(unsigned int, num_buffers, q->min_buffers_needed);
c1426bc7 918 memset(q->plane_sizes, 0, sizeof(q->plane_sizes));
e23ccc0a 919 memset(q->alloc_ctx, 0, sizeof(q->alloc_ctx));
13b14095 920 q->memory = req->memory;
e23ccc0a
PO
921
922 /*
923 * Ask the driver how many buffers and planes per buffer it requires.
924 * Driver also sets the size and allocator context for each plane.
925 */
fc714e70 926 ret = call_qop(q, queue_setup, q, NULL, &num_buffers, &num_planes,
c1426bc7 927 q->plane_sizes, q->alloc_ctx);
a1d36d8c 928 if (ret)
e23ccc0a
PO
929 return ret;
930
931 /* Finally, allocate buffers and video memory */
a7afcacc
HV
932 allocated_buffers = __vb2_queue_alloc(q, req->memory, num_buffers, num_planes);
933 if (allocated_buffers == 0) {
3050040b 934 dprintk(1, "memory allocation failed\n");
66072d4f 935 return -ENOMEM;
e23ccc0a
PO
936 }
937
b3379c62
HV
938 /*
939 * There is no point in continuing if we can't allocate the minimum
940 * number of buffers needed by this vb2_queue.
941 */
942 if (allocated_buffers < q->min_buffers_needed)
943 ret = -ENOMEM;
944
e23ccc0a
PO
945 /*
946 * Check if driver can handle the allocated number of buffers.
947 */
b3379c62 948 if (!ret && allocated_buffers < num_buffers) {
2d86401c 949 num_buffers = allocated_buffers;
e23ccc0a 950
fc714e70
GL
951 ret = call_qop(q, queue_setup, q, NULL, &num_buffers,
952 &num_planes, q->plane_sizes, q->alloc_ctx);
e23ccc0a 953
2d86401c 954 if (!ret && allocated_buffers < num_buffers)
e23ccc0a 955 ret = -ENOMEM;
e23ccc0a
PO
956
957 /*
2d86401c
GL
958 * Either the driver has accepted a smaller number of buffers,
959 * or .queue_setup() returned an error
e23ccc0a 960 */
2d86401c
GL
961 }
962
f035eb4e 963 mutex_lock(&q->mmap_lock);
2d86401c
GL
964 q->num_buffers = allocated_buffers;
965
966 if (ret < 0) {
a7afcacc
HV
967 /*
968 * Note: __vb2_queue_free() will subtract 'allocated_buffers'
969 * from q->num_buffers.
970 */
2d86401c 971 __vb2_queue_free(q, allocated_buffers);
f035eb4e 972 mutex_unlock(&q->mmap_lock);
2d86401c 973 return ret;
e23ccc0a 974 }
f035eb4e 975 mutex_unlock(&q->mmap_lock);
e23ccc0a 976
e23ccc0a
PO
977 /*
978 * Return the number of successfully allocated buffers
979 * to the userspace.
980 */
2d86401c 981 req->count = allocated_buffers;
58d75f4b 982 q->waiting_for_buffers = !V4L2_TYPE_IS_OUTPUT(q->type);
e23ccc0a
PO
983
984 return 0;
e23ccc0a 985}
37d9ed94
HV
986
987/**
988 * vb2_reqbufs() - Wrapper for __reqbufs() that also verifies the memory and
989 * type values.
990 * @q: videobuf2 queue
991 * @req: struct passed from userspace to vidioc_reqbufs handler in driver
992 */
993int vb2_reqbufs(struct vb2_queue *q, struct v4l2_requestbuffers *req)
994{
995 int ret = __verify_memory_type(q, req->memory, req->type);
996
997 return ret ? ret : __reqbufs(q, req);
998}
e23ccc0a
PO
999EXPORT_SYMBOL_GPL(vb2_reqbufs);
1000
2d86401c 1001/**
37d9ed94 1002 * __create_bufs() - Allocate buffers and any required auxiliary structs
2d86401c
GL
1003 * @q: videobuf2 queue
1004 * @create: creation parameters, passed from userspace to vidioc_create_bufs
1005 * handler in driver
1006 *
1007 * Should be called from vidioc_create_bufs ioctl handler of a driver.
1008 * This function:
1009 * 1) verifies parameter sanity
1010 * 2) calls the .queue_setup() queue operation
1011 * 3) performs any necessary memory allocations
1012 *
1013 * The return values from this function are intended to be directly returned
1014 * from vidioc_create_bufs handler in driver.
1015 */
37d9ed94 1016static int __create_bufs(struct vb2_queue *q, struct v4l2_create_buffers *create)
2d86401c
GL
1017{
1018 unsigned int num_planes = 0, num_buffers, allocated_buffers;
37d9ed94 1019 int ret;
2d86401c
GL
1020
1021 if (q->num_buffers == VIDEO_MAX_FRAME) {
fd4354cf 1022 dprintk(1, "maximum number of buffers already allocated\n");
2d86401c
GL
1023 return -ENOBUFS;
1024 }
1025
2d86401c
GL
1026 if (!q->num_buffers) {
1027 memset(q->plane_sizes, 0, sizeof(q->plane_sizes));
1028 memset(q->alloc_ctx, 0, sizeof(q->alloc_ctx));
1029 q->memory = create->memory;
58d75f4b 1030 q->waiting_for_buffers = !V4L2_TYPE_IS_OUTPUT(q->type);
2d86401c
GL
1031 }
1032
1033 num_buffers = min(create->count, VIDEO_MAX_FRAME - q->num_buffers);
1034
1035 /*
1036 * Ask the driver, whether the requested number of buffers, planes per
1037 * buffer and their sizes are acceptable
1038 */
1039 ret = call_qop(q, queue_setup, q, &create->format, &num_buffers,
1040 &num_planes, q->plane_sizes, q->alloc_ctx);
a1d36d8c 1041 if (ret)
2d86401c
GL
1042 return ret;
1043
1044 /* Finally, allocate buffers and video memory */
a7afcacc 1045 allocated_buffers = __vb2_queue_alloc(q, create->memory, num_buffers,
2d86401c 1046 num_planes);
a7afcacc 1047 if (allocated_buffers == 0) {
3050040b 1048 dprintk(1, "memory allocation failed\n");
f05393d2 1049 return -ENOMEM;
2d86401c
GL
1050 }
1051
2d86401c
GL
1052 /*
1053 * Check if driver can handle the so far allocated number of buffers.
1054 */
a7afcacc
HV
1055 if (allocated_buffers < num_buffers) {
1056 num_buffers = allocated_buffers;
2d86401c
GL
1057
1058 /*
1059 * q->num_buffers contains the total number of buffers, that the
1060 * queue driver has set up
1061 */
1062 ret = call_qop(q, queue_setup, q, &create->format, &num_buffers,
1063 &num_planes, q->plane_sizes, q->alloc_ctx);
1064
1065 if (!ret && allocated_buffers < num_buffers)
1066 ret = -ENOMEM;
1067
1068 /*
1069 * Either the driver has accepted a smaller number of buffers,
1070 * or .queue_setup() returned an error
1071 */
1072 }
1073
f035eb4e 1074 mutex_lock(&q->mmap_lock);
2d86401c
GL
1075 q->num_buffers += allocated_buffers;
1076
1077 if (ret < 0) {
a7afcacc
HV
1078 /*
1079 * Note: __vb2_queue_free() will subtract 'allocated_buffers'
1080 * from q->num_buffers.
1081 */
2d86401c 1082 __vb2_queue_free(q, allocated_buffers);
f035eb4e 1083 mutex_unlock(&q->mmap_lock);
f05393d2 1084 return -ENOMEM;
2d86401c 1085 }
f035eb4e 1086 mutex_unlock(&q->mmap_lock);
2d86401c
GL
1087
1088 /*
1089 * Return the number of successfully allocated buffers
1090 * to the userspace.
1091 */
1092 create->count = allocated_buffers;
1093
1094 return 0;
1095}
37d9ed94
HV
1096
1097/**
53aa3b19
NT
1098 * vb2_create_bufs() - Wrapper for __create_bufs() that also verifies the
1099 * memory and type values.
37d9ed94
HV
1100 * @q: videobuf2 queue
1101 * @create: creation parameters, passed from userspace to vidioc_create_bufs
1102 * handler in driver
1103 */
1104int vb2_create_bufs(struct vb2_queue *q, struct v4l2_create_buffers *create)
1105{
1106 int ret = __verify_memory_type(q, create->memory, create->format.type);
1107
1108 create->index = q->num_buffers;
f05393d2
HV
1109 if (create->count == 0)
1110 return ret != -EBUSY ? ret : 0;
37d9ed94
HV
1111 return ret ? ret : __create_bufs(q, create);
1112}
2d86401c
GL
1113EXPORT_SYMBOL_GPL(vb2_create_bufs);
1114
e23ccc0a
PO
1115/**
1116 * vb2_plane_vaddr() - Return a kernel virtual address of a given plane
1117 * @vb: vb2_buffer to which the plane in question belongs to
1118 * @plane_no: plane number for which the address is to be returned
1119 *
1120 * This function returns a kernel virtual address of a given plane if
1121 * such a mapping exist, NULL otherwise.
1122 */
1123void *vb2_plane_vaddr(struct vb2_buffer *vb, unsigned int plane_no)
1124{
a00d0266 1125 if (plane_no > vb->num_planes || !vb->planes[plane_no].mem_priv)
e23ccc0a
PO
1126 return NULL;
1127
a1d36d8c 1128 return call_ptr_memop(vb, vaddr, vb->planes[plane_no].mem_priv);
e23ccc0a
PO
1129
1130}
1131EXPORT_SYMBOL_GPL(vb2_plane_vaddr);
1132
1133/**
1134 * vb2_plane_cookie() - Return allocator specific cookie for the given plane
1135 * @vb: vb2_buffer to which the plane in question belongs to
1136 * @plane_no: plane number for which the cookie is to be returned
1137 *
1138 * This function returns an allocator specific cookie for a given plane if
1139 * available, NULL otherwise. The allocator should provide some simple static
1140 * inline function, which would convert this cookie to the allocator specific
1141 * type that can be used directly by the driver to access the buffer. This can
1142 * be for example physical address, pointer to scatter list or IOMMU mapping.
1143 */
1144void *vb2_plane_cookie(struct vb2_buffer *vb, unsigned int plane_no)
1145{
a9ae4692 1146 if (plane_no >= vb->num_planes || !vb->planes[plane_no].mem_priv)
e23ccc0a
PO
1147 return NULL;
1148
a1d36d8c 1149 return call_ptr_memop(vb, cookie, vb->planes[plane_no].mem_priv);
e23ccc0a
PO
1150}
1151EXPORT_SYMBOL_GPL(vb2_plane_cookie);
1152
1153/**
1154 * vb2_buffer_done() - inform videobuf that an operation on a buffer is finished
1155 * @vb: vb2_buffer returned from the driver
1156 * @state: either VB2_BUF_STATE_DONE if the operation finished successfully
b3379c62
HV
1157 * or VB2_BUF_STATE_ERROR if the operation finished with an error.
1158 * If start_streaming fails then it should return buffers with state
1159 * VB2_BUF_STATE_QUEUED to put them back into the queue.
e23ccc0a
PO
1160 *
1161 * This function should be called by the driver after a hardware operation on
1162 * a buffer is finished and the buffer may be returned to userspace. The driver
1163 * cannot use this buffer anymore until it is queued back to it by videobuf
1164 * by the means of buf_queue callback. Only buffers previously queued to the
1165 * driver by buf_queue can be passed to this function.
b3379c62
HV
1166 *
1167 * While streaming a buffer can only be returned in state DONE or ERROR.
1168 * The start_streaming op can also return them in case the DMA engine cannot
1169 * be started for some reason. In that case the buffers should be returned with
1170 * state QUEUED.
e23ccc0a
PO
1171 */
1172void vb2_buffer_done(struct vb2_buffer *vb, enum vb2_buffer_state state)
1173{
1174 struct vb2_queue *q = vb->vb2_queue;
1175 unsigned long flags;
3e0c2f20 1176 unsigned int plane;
e23ccc0a 1177
b3379c62 1178 if (WARN_ON(vb->state != VB2_BUF_STATE_ACTIVE))
e23ccc0a
PO
1179 return;
1180
bf3593d9
HV
1181 if (WARN_ON(state != VB2_BUF_STATE_DONE &&
1182 state != VB2_BUF_STATE_ERROR &&
1183 state != VB2_BUF_STATE_QUEUED))
1184 state = VB2_BUF_STATE_ERROR;
e23ccc0a 1185
b5b4541e
HV
1186#ifdef CONFIG_VIDEO_ADV_DEBUG
1187 /*
1188 * Although this is not a callback, it still does have to balance
1189 * with the buf_queue op. So update this counter manually.
1190 */
1191 vb->cnt_buf_done++;
1192#endif
3050040b 1193 dprintk(4, "done processing on buffer %d, state: %d\n",
9b6f5dc0 1194 vb->v4l2_buf.index, state);
e23ccc0a 1195
3e0c2f20
MS
1196 /* sync buffers */
1197 for (plane = 0; plane < vb->num_planes; ++plane)
a1d36d8c 1198 call_void_memop(vb, finish, vb->planes[plane].mem_priv);
3e0c2f20 1199
e23ccc0a
PO
1200 /* Add the buffer to the done buffers list */
1201 spin_lock_irqsave(&q->done_lock, flags);
1202 vb->state = state;
b3379c62
HV
1203 if (state != VB2_BUF_STATE_QUEUED)
1204 list_add_tail(&vb->done_entry, &q->done_list);
6ea3b980 1205 atomic_dec(&q->owned_by_drv_count);
e23ccc0a
PO
1206 spin_unlock_irqrestore(&q->done_lock, flags);
1207
b3379c62
HV
1208 if (state == VB2_BUF_STATE_QUEUED)
1209 return;
1210
e23ccc0a
PO
1211 /* Inform any processes that may be waiting for buffers */
1212 wake_up(&q->done_wq);
1213}
1214EXPORT_SYMBOL_GPL(vb2_buffer_done);
1215
34ea4d44
LP
1216/**
1217 * vb2_discard_done() - discard all buffers marked as DONE
1218 * @q: videobuf2 queue
1219 *
1220 * This function is intended to be used with suspend/resume operations. It
1221 * discards all 'done' buffers as they would be too old to be requested after
1222 * resume.
1223 *
1224 * Drivers must stop the hardware and synchronize with interrupt handlers and/or
1225 * delayed works before calling this function to make sure no buffer will be
1226 * touched by the driver and/or hardware.
1227 */
1228void vb2_discard_done(struct vb2_queue *q)
1229{
1230 struct vb2_buffer *vb;
1231 unsigned long flags;
1232
1233 spin_lock_irqsave(&q->done_lock, flags);
1234 list_for_each_entry(vb, &q->done_list, done_entry)
1235 vb->state = VB2_BUF_STATE_ERROR;
1236 spin_unlock_irqrestore(&q->done_lock, flags);
1237}
1238EXPORT_SYMBOL_GPL(vb2_discard_done);
1239
e23ccc0a 1240/**
32a77260
HV
1241 * __fill_vb2_buffer() - fill a vb2_buffer with information provided in a
1242 * v4l2_buffer by the userspace. The caller has already verified that struct
1243 * v4l2_buffer has a valid number of planes.
e23ccc0a 1244 */
32a77260 1245static void __fill_vb2_buffer(struct vb2_buffer *vb, const struct v4l2_buffer *b,
e23ccc0a
PO
1246 struct v4l2_plane *v4l2_planes)
1247{
1248 unsigned int plane;
e23ccc0a 1249
f61bf13b
KD
1250 if (V4L2_TYPE_IS_OUTPUT(b->type)) {
1251 if (WARN_ON_ONCE(b->bytesused == 0)) {
1252 pr_warn_once("use of bytesused == 0 is deprecated and will be removed in the future,\n");
1253 if (vb->vb2_queue->allow_zero_bytesused)
1254 pr_warn_once("use VIDIOC_DECODER_CMD(V4L2_DEC_CMD_STOP) instead.\n");
1255 else
1256 pr_warn_once("use the actual size instead.\n");
1257 }
1258 }
1259
e23ccc0a 1260 if (V4L2_TYPE_IS_MULTIPLANAR(b->type)) {
e23ccc0a
PO
1261 if (b->memory == V4L2_MEMORY_USERPTR) {
1262 for (plane = 0; plane < vb->num_planes; ++plane) {
1263 v4l2_planes[plane].m.userptr =
1264 b->m.planes[plane].m.userptr;
1265 v4l2_planes[plane].length =
1266 b->m.planes[plane].length;
1267 }
1268 }
c5384048
SS
1269 if (b->memory == V4L2_MEMORY_DMABUF) {
1270 for (plane = 0; plane < vb->num_planes; ++plane) {
1271 v4l2_planes[plane].m.fd =
1272 b->m.planes[plane].m.fd;
1273 v4l2_planes[plane].length =
1274 b->m.planes[plane].length;
c5384048
SS
1275 }
1276 }
8a75ffb8
HV
1277
1278 /* Fill in driver-provided information for OUTPUT types */
1279 if (V4L2_TYPE_IS_OUTPUT(b->type)) {
1280 /*
1281 * Will have to go up to b->length when API starts
1282 * accepting variable number of planes.
1283 *
1284 * If bytesused == 0 for the output buffer, then fall
1285 * back to the full buffer size. In that case
1286 * userspace clearly never bothered to set it and
1287 * it's a safe assumption that they really meant to
1288 * use the full plane sizes.
f61bf13b
KD
1289 *
1290 * Some drivers, e.g. old codec drivers, use bytesused == 0
1291 * as a way to indicate that streaming is finished.
1292 * In that case, the driver should use the
1293 * allow_zero_bytesused flag to keep old userspace
1294 * applications working.
8a75ffb8
HV
1295 */
1296 for (plane = 0; plane < vb->num_planes; ++plane) {
1297 struct v4l2_plane *pdst = &v4l2_planes[plane];
1298 struct v4l2_plane *psrc = &b->m.planes[plane];
1299
f61bf13b
KD
1300 if (vb->vb2_queue->allow_zero_bytesused)
1301 pdst->bytesused = psrc->bytesused;
1302 else
1303 pdst->bytesused = psrc->bytesused ?
1304 psrc->bytesused : pdst->length;
8a75ffb8
HV
1305 pdst->data_offset = psrc->data_offset;
1306 }
1307 }
e23ccc0a
PO
1308 } else {
1309 /*
1310 * Single-planar buffers do not use planes array,
1311 * so fill in relevant v4l2_buffer struct fields instead.
1312 * In videobuf we use our internal V4l2_planes struct for
1313 * single-planar buffers as well, for simplicity.
61bd8fb3 1314 *
8a75ffb8
HV
1315 * If bytesused == 0 for the output buffer, then fall back
1316 * to the full buffer size as that's a sensible default.
f61bf13b
KD
1317 *
1318 * Some drivers, e.g. old codec drivers, use bytesused == 0 as
1319 * a way to indicate that streaming is finished. In that case,
1320 * the driver should use the allow_zero_bytesused flag to keep
1321 * old userspace applications working.
e23ccc0a 1322 */
e23ccc0a
PO
1323 if (b->memory == V4L2_MEMORY_USERPTR) {
1324 v4l2_planes[0].m.userptr = b->m.userptr;
1325 v4l2_planes[0].length = b->length;
1326 }
c5384048
SS
1327
1328 if (b->memory == V4L2_MEMORY_DMABUF) {
1329 v4l2_planes[0].m.fd = b->m.fd;
1330 v4l2_planes[0].length = b->length;
c5384048 1331 }
8a75ffb8 1332
f61bf13b
KD
1333 if (V4L2_TYPE_IS_OUTPUT(b->type)) {
1334 if (vb->vb2_queue->allow_zero_bytesused)
1335 v4l2_planes[0].bytesused = b->bytesused;
1336 else
1337 v4l2_planes[0].bytesused = b->bytesused ?
1338 b->bytesused : v4l2_planes[0].length;
1339 } else
8a75ffb8
HV
1340 v4l2_planes[0].bytesused = 0;
1341
e23ccc0a
PO
1342 }
1343
f1343281 1344 /* Zero flags that the vb2 core handles */
1b18e7a0 1345 vb->v4l2_buf.flags = b->flags & ~V4L2_BUFFER_MASK_FLAGS;
7ce6fd8f
SA
1346 if ((vb->vb2_queue->timestamp_flags & V4L2_BUF_FLAG_TIMESTAMP_MASK) !=
1347 V4L2_BUF_FLAG_TIMESTAMP_COPY || !V4L2_TYPE_IS_OUTPUT(b->type)) {
1348 /*
1349 * Non-COPY timestamps and non-OUTPUT queues will get
1350 * their timestamp and timestamp source flags from the
1351 * queue.
1352 */
1353 vb->v4l2_buf.flags &= ~V4L2_BUF_FLAG_TSTAMP_SRC_MASK;
1354 }
1355
f1343281
HV
1356 if (V4L2_TYPE_IS_OUTPUT(b->type)) {
1357 /*
1358 * For output buffers mask out the timecode flag:
1359 * this will be handled later in vb2_internal_qbuf().
1360 * The 'field' is valid metadata for this output buffer
1361 * and so that needs to be copied here.
1362 */
1363 vb->v4l2_buf.flags &= ~V4L2_BUF_FLAG_TIMECODE;
1364 vb->v4l2_buf.field = b->field;
1365 } else {
1366 /* Zero any output buffer flags as this is a capture buffer */
1367 vb->v4l2_buf.flags &= ~V4L2_BUFFER_OUT_FLAGS;
1368 }
e23ccc0a
PO
1369}
1370
dcc2428a
HV
1371/**
1372 * __qbuf_mmap() - handle qbuf of an MMAP buffer
1373 */
1374static int __qbuf_mmap(struct vb2_buffer *vb, const struct v4l2_buffer *b)
1375{
1376 __fill_vb2_buffer(vb, b, vb->v4l2_planes);
1377 return call_vb_qop(vb, buf_prepare, vb);
1378}
1379
e23ccc0a
PO
1380/**
1381 * __qbuf_userptr() - handle qbuf of a USERPTR buffer
1382 */
2d86401c 1383static int __qbuf_userptr(struct vb2_buffer *vb, const struct v4l2_buffer *b)
e23ccc0a
PO
1384{
1385 struct v4l2_plane planes[VIDEO_MAX_PLANES];
1386 struct vb2_queue *q = vb->vb2_queue;
1387 void *mem_priv;
1388 unsigned int plane;
1389 int ret;
cd474037
HV
1390 enum dma_data_direction dma_dir =
1391 V4L2_TYPE_IS_OUTPUT(q->type) ? DMA_TO_DEVICE : DMA_FROM_DEVICE;
256f3162 1392 bool reacquired = vb->planes[0].mem_priv == NULL;
e23ccc0a 1393
412376a1 1394 memset(planes, 0, sizeof(planes[0]) * vb->num_planes);
32a77260
HV
1395 /* Copy relevant information provided by the userspace */
1396 __fill_vb2_buffer(vb, b, planes);
e23ccc0a
PO
1397
1398 for (plane = 0; plane < vb->num_planes; ++plane) {
1399 /* Skip the plane if already verified */
f0b7c7fc
MS
1400 if (vb->v4l2_planes[plane].m.userptr &&
1401 vb->v4l2_planes[plane].m.userptr == planes[plane].m.userptr
e23ccc0a
PO
1402 && vb->v4l2_planes[plane].length == planes[plane].length)
1403 continue;
1404
fd4354cf 1405 dprintk(3, "userspace address for plane %d changed, "
e23ccc0a
PO
1406 "reacquiring memory\n", plane);
1407
c1426bc7
MS
1408 /* Check if the provided plane buffer is large enough */
1409 if (planes[plane].length < q->plane_sizes[plane]) {
fd4354cf 1410 dprintk(1, "provided buffer size %u is less than "
2484a7e2
SWK
1411 "setup size %u for plane %d\n",
1412 planes[plane].length,
1413 q->plane_sizes[plane], plane);
4c2625db 1414 ret = -EINVAL;
c1426bc7
MS
1415 goto err;
1416 }
1417
e23ccc0a 1418 /* Release previously acquired memory if present */
256f3162
HV
1419 if (vb->planes[plane].mem_priv) {
1420 if (!reacquired) {
1421 reacquired = true;
a1d36d8c 1422 call_void_vb_qop(vb, buf_cleanup, vb);
256f3162 1423 }
a1d36d8c 1424 call_void_memop(vb, put_userptr, vb->planes[plane].mem_priv);
256f3162 1425 }
e23ccc0a
PO
1426
1427 vb->planes[plane].mem_priv = NULL;
256f3162 1428 memset(&vb->v4l2_planes[plane], 0, sizeof(struct v4l2_plane));
e23ccc0a
PO
1429
1430 /* Acquire each plane's memory */
a1d36d8c 1431 mem_priv = call_ptr_memop(vb, get_userptr, q->alloc_ctx[plane],
a00d0266 1432 planes[plane].m.userptr,
cd474037 1433 planes[plane].length, dma_dir);
a00d0266 1434 if (IS_ERR_OR_NULL(mem_priv)) {
fd4354cf 1435 dprintk(1, "failed acquiring userspace "
e23ccc0a 1436 "memory for plane %d\n", plane);
a00d0266
MS
1437 ret = mem_priv ? PTR_ERR(mem_priv) : -EINVAL;
1438 goto err;
e23ccc0a 1439 }
a00d0266 1440 vb->planes[plane].mem_priv = mem_priv;
e23ccc0a
PO
1441 }
1442
e23ccc0a
PO
1443 /*
1444 * Now that everything is in order, copy relevant information
1445 * provided by userspace.
1446 */
1447 for (plane = 0; plane < vb->num_planes; ++plane)
1448 vb->v4l2_planes[plane] = planes[plane];
1449
256f3162
HV
1450 if (reacquired) {
1451 /*
1452 * One or more planes changed, so we must call buf_init to do
1453 * the driver-specific initialization on the newly acquired
1454 * buffer, if provided.
1455 */
1456 ret = call_vb_qop(vb, buf_init, vb);
1457 if (ret) {
fd4354cf 1458 dprintk(1, "buffer initialization failed\n");
256f3162
HV
1459 goto err;
1460 }
1461 }
1462
1463 ret = call_vb_qop(vb, buf_prepare, vb);
1464 if (ret) {
fd4354cf 1465 dprintk(1, "buffer preparation failed\n");
a1d36d8c 1466 call_void_vb_qop(vb, buf_cleanup, vb);
256f3162
HV
1467 goto err;
1468 }
1469
e23ccc0a
PO
1470 return 0;
1471err:
1472 /* In case of errors, release planes that were already acquired */
c1426bc7
MS
1473 for (plane = 0; plane < vb->num_planes; ++plane) {
1474 if (vb->planes[plane].mem_priv)
a1d36d8c 1475 call_void_memop(vb, put_userptr, vb->planes[plane].mem_priv);
c1426bc7
MS
1476 vb->planes[plane].mem_priv = NULL;
1477 vb->v4l2_planes[plane].m.userptr = 0;
1478 vb->v4l2_planes[plane].length = 0;
e23ccc0a
PO
1479 }
1480
1481 return ret;
1482}
1483
c5384048
SS
1484/**
1485 * __qbuf_dmabuf() - handle qbuf of a DMABUF buffer
1486 */
1487static int __qbuf_dmabuf(struct vb2_buffer *vb, const struct v4l2_buffer *b)
1488{
1489 struct v4l2_plane planes[VIDEO_MAX_PLANES];
1490 struct vb2_queue *q = vb->vb2_queue;
1491 void *mem_priv;
1492 unsigned int plane;
1493 int ret;
cd474037
HV
1494 enum dma_data_direction dma_dir =
1495 V4L2_TYPE_IS_OUTPUT(q->type) ? DMA_TO_DEVICE : DMA_FROM_DEVICE;
256f3162 1496 bool reacquired = vb->planes[0].mem_priv == NULL;
c5384048 1497
412376a1 1498 memset(planes, 0, sizeof(planes[0]) * vb->num_planes);
6f546c5f 1499 /* Copy relevant information provided by the userspace */
c5384048
SS
1500 __fill_vb2_buffer(vb, b, planes);
1501
1502 for (plane = 0; plane < vb->num_planes; ++plane) {
1503 struct dma_buf *dbuf = dma_buf_get(planes[plane].m.fd);
1504
1505 if (IS_ERR_OR_NULL(dbuf)) {
fd4354cf 1506 dprintk(1, "invalid dmabuf fd for plane %d\n",
c5384048
SS
1507 plane);
1508 ret = -EINVAL;
1509 goto err;
1510 }
1511
1512 /* use DMABUF size if length is not provided */
1513 if (planes[plane].length == 0)
1514 planes[plane].length = dbuf->size;
1515
412376a1 1516 if (planes[plane].length < q->plane_sizes[plane]) {
fd4354cf 1517 dprintk(1, "invalid dmabuf length for plane %d\n",
77c0782e 1518 plane);
c5384048
SS
1519 ret = -EINVAL;
1520 goto err;
1521 }
1522
1523 /* Skip the plane if already verified */
1524 if (dbuf == vb->planes[plane].dbuf &&
1525 vb->v4l2_planes[plane].length == planes[plane].length) {
1526 dma_buf_put(dbuf);
1527 continue;
1528 }
1529
fd4354cf 1530 dprintk(1, "buffer for plane %d changed\n", plane);
c5384048 1531
256f3162
HV
1532 if (!reacquired) {
1533 reacquired = true;
a1d36d8c 1534 call_void_vb_qop(vb, buf_cleanup, vb);
256f3162
HV
1535 }
1536
c5384048 1537 /* Release previously acquired memory if present */
b5b4541e 1538 __vb2_plane_dmabuf_put(vb, &vb->planes[plane]);
c5384048
SS
1539 memset(&vb->v4l2_planes[plane], 0, sizeof(struct v4l2_plane));
1540
1541 /* Acquire each plane's memory */
a1d36d8c 1542 mem_priv = call_ptr_memop(vb, attach_dmabuf, q->alloc_ctx[plane],
cd474037 1543 dbuf, planes[plane].length, dma_dir);
c5384048 1544 if (IS_ERR(mem_priv)) {
fd4354cf 1545 dprintk(1, "failed to attach dmabuf\n");
c5384048
SS
1546 ret = PTR_ERR(mem_priv);
1547 dma_buf_put(dbuf);
1548 goto err;
1549 }
1550
1551 vb->planes[plane].dbuf = dbuf;
1552 vb->planes[plane].mem_priv = mem_priv;
1553 }
1554
1555 /* TODO: This pins the buffer(s) with dma_buf_map_attachment()).. but
1556 * really we want to do this just before the DMA, not while queueing
1557 * the buffer(s)..
1558 */
1559 for (plane = 0; plane < vb->num_planes; ++plane) {
b5b4541e 1560 ret = call_memop(vb, map_dmabuf, vb->planes[plane].mem_priv);
c5384048 1561 if (ret) {
fd4354cf 1562 dprintk(1, "failed to map dmabuf for plane %d\n",
c5384048
SS
1563 plane);
1564 goto err;
1565 }
1566 vb->planes[plane].dbuf_mapped = 1;
1567 }
1568
c5384048
SS
1569 /*
1570 * Now that everything is in order, copy relevant information
1571 * provided by userspace.
1572 */
1573 for (plane = 0; plane < vb->num_planes; ++plane)
1574 vb->v4l2_planes[plane] = planes[plane];
1575
256f3162
HV
1576 if (reacquired) {
1577 /*
1578 * Call driver-specific initialization on the newly acquired buffer,
1579 * if provided.
1580 */
1581 ret = call_vb_qop(vb, buf_init, vb);
1582 if (ret) {
fd4354cf 1583 dprintk(1, "buffer initialization failed\n");
256f3162
HV
1584 goto err;
1585 }
1586 }
1587
1588 ret = call_vb_qop(vb, buf_prepare, vb);
1589 if (ret) {
fd4354cf 1590 dprintk(1, "buffer preparation failed\n");
a1d36d8c 1591 call_void_vb_qop(vb, buf_cleanup, vb);
256f3162
HV
1592 goto err;
1593 }
1594
c5384048
SS
1595 return 0;
1596err:
1597 /* In case of errors, release planes that were already acquired */
1598 __vb2_buf_dmabuf_put(vb);
1599
1600 return ret;
1601}
1602
e23ccc0a
PO
1603/**
1604 * __enqueue_in_driver() - enqueue a vb2_buffer in driver for processing
1605 */
1606static void __enqueue_in_driver(struct vb2_buffer *vb)
1607{
1608 struct vb2_queue *q = vb->vb2_queue;
3e0c2f20 1609 unsigned int plane;
e23ccc0a
PO
1610
1611 vb->state = VB2_BUF_STATE_ACTIVE;
6ea3b980 1612 atomic_inc(&q->owned_by_drv_count);
3e0c2f20
MS
1613
1614 /* sync buffers */
1615 for (plane = 0; plane < vb->num_planes; ++plane)
a1d36d8c 1616 call_void_memop(vb, prepare, vb->planes[plane].mem_priv);
3e0c2f20 1617
a1d36d8c 1618 call_void_vb_qop(vb, buf_queue, vb);
e23ccc0a
PO
1619}
1620
2d86401c 1621static int __buf_prepare(struct vb2_buffer *vb, const struct v4l2_buffer *b)
ebc087d0
GL
1622{
1623 struct vb2_queue *q = vb->vb2_queue;
1624 int ret;
1625
8023ed09 1626 ret = __verify_length(vb, b);
3a9621b0 1627 if (ret < 0) {
fd4354cf 1628 dprintk(1, "plane parameters verification failed: %d\n", ret);
8023ed09 1629 return ret;
3a9621b0 1630 }
e35e41b5
HV
1631 if (b->field == V4L2_FIELD_ALTERNATE && V4L2_TYPE_IS_OUTPUT(q->type)) {
1632 /*
1633 * If the format's field is ALTERNATE, then the buffer's field
1634 * should be either TOP or BOTTOM, not ALTERNATE since that
1635 * makes no sense. The driver has to know whether the
1636 * buffer represents a top or a bottom field in order to
1637 * program any DMA correctly. Using ALTERNATE is wrong, since
1638 * that just says that it is either a top or a bottom field,
1639 * but not which of the two it is.
1640 */
1641 dprintk(1, "the field is incorrectly set to ALTERNATE for an output buffer\n");
1642 return -EINVAL;
1643 }
8023ed09 1644
4bb7267d
LP
1645 if (q->error) {
1646 dprintk(1, "fatal error occurred on queue\n");
1647 return -EIO;
1648 }
1649
b18a8ff2 1650 vb->state = VB2_BUF_STATE_PREPARING;
f1343281
HV
1651 vb->v4l2_buf.timestamp.tv_sec = 0;
1652 vb->v4l2_buf.timestamp.tv_usec = 0;
1653 vb->v4l2_buf.sequence = 0;
1654
ebc087d0
GL
1655 switch (q->memory) {
1656 case V4L2_MEMORY_MMAP:
1657 ret = __qbuf_mmap(vb, b);
1658 break;
1659 case V4L2_MEMORY_USERPTR:
12561ad6 1660 down_read(&current->mm->mmap_sem);
ebc087d0 1661 ret = __qbuf_userptr(vb, b);
12561ad6 1662 up_read(&current->mm->mmap_sem);
ebc087d0 1663 break;
c5384048
SS
1664 case V4L2_MEMORY_DMABUF:
1665 ret = __qbuf_dmabuf(vb, b);
1666 break;
ebc087d0
GL
1667 default:
1668 WARN(1, "Invalid queue type\n");
1669 ret = -EINVAL;
1670 }
1671
ebc087d0 1672 if (ret)
fd4354cf 1673 dprintk(1, "buffer preparation failed: %d\n", ret);
b18a8ff2 1674 vb->state = ret ? VB2_BUF_STATE_DEQUEUED : VB2_BUF_STATE_PREPARED;
ebc087d0
GL
1675
1676 return ret;
1677}
1678
012043b8 1679static int vb2_queue_or_prepare_buf(struct vb2_queue *q, struct v4l2_buffer *b,
4138111a 1680 const char *opname)
2d86401c 1681{
2d86401c 1682 if (b->type != q->type) {
fd4354cf 1683 dprintk(1, "%s: invalid buffer type\n", opname);
b18a8ff2 1684 return -EINVAL;
2d86401c
GL
1685 }
1686
1687 if (b->index >= q->num_buffers) {
fd4354cf 1688 dprintk(1, "%s: buffer index out of range\n", opname);
b18a8ff2 1689 return -EINVAL;
2d86401c
GL
1690 }
1691
4138111a 1692 if (q->bufs[b->index] == NULL) {
2d86401c 1693 /* Should never happen */
fd4354cf 1694 dprintk(1, "%s: buffer is NULL\n", opname);
b18a8ff2 1695 return -EINVAL;
2d86401c
GL
1696 }
1697
1698 if (b->memory != q->memory) {
fd4354cf 1699 dprintk(1, "%s: invalid memory type\n", opname);
b18a8ff2 1700 return -EINVAL;
2d86401c
GL
1701 }
1702
4138111a 1703 return __verify_planes_array(q->bufs[b->index], b);
012043b8 1704}
2d86401c 1705
e23ccc0a 1706/**
012043b8 1707 * vb2_prepare_buf() - Pass ownership of a buffer from userspace to the kernel
e23ccc0a 1708 * @q: videobuf2 queue
012043b8
LP
1709 * @b: buffer structure passed from userspace to vidioc_prepare_buf
1710 * handler in driver
e23ccc0a 1711 *
012043b8 1712 * Should be called from vidioc_prepare_buf ioctl handler of a driver.
e23ccc0a
PO
1713 * This function:
1714 * 1) verifies the passed buffer,
012043b8
LP
1715 * 2) calls buf_prepare callback in the driver (if provided), in which
1716 * driver-specific buffer initialization can be performed,
e23ccc0a
PO
1717 *
1718 * The return values from this function are intended to be directly returned
012043b8 1719 * from vidioc_prepare_buf handler in driver.
e23ccc0a 1720 */
012043b8 1721int vb2_prepare_buf(struct vb2_queue *q, struct v4l2_buffer *b)
e23ccc0a 1722{
4138111a 1723 struct vb2_buffer *vb;
b2f2f047
HV
1724 int ret;
1725
74753cff 1726 if (vb2_fileio_is_active(q)) {
fd4354cf 1727 dprintk(1, "file io in progress\n");
b2f2f047
HV
1728 return -EBUSY;
1729 }
4138111a 1730
b2f2f047 1731 ret = vb2_queue_or_prepare_buf(q, b, "prepare_buf");
4138111a
HV
1732 if (ret)
1733 return ret;
1734
1735 vb = q->bufs[b->index];
1736 if (vb->state != VB2_BUF_STATE_DEQUEUED) {
fd4354cf 1737 dprintk(1, "invalid buffer state %d\n",
4138111a
HV
1738 vb->state);
1739 return -EINVAL;
1740 }
1741
1742 ret = __buf_prepare(vb, b);
1743 if (!ret) {
1744 /* Fill buffer information for the userspace */
1745 __fill_v4l2_buffer(vb, b);
1746
fd4354cf 1747 dprintk(1, "prepare of buffer %d succeeded\n", vb->v4l2_buf.index);
4138111a
HV
1748 }
1749 return ret;
012043b8
LP
1750}
1751EXPORT_SYMBOL_GPL(vb2_prepare_buf);
e23ccc0a 1752
02f142ec
HV
1753/**
1754 * vb2_start_streaming() - Attempt to start streaming.
1755 * @q: videobuf2 queue
1756 *
b3379c62
HV
1757 * Attempt to start streaming. When this function is called there must be
1758 * at least q->min_buffers_needed buffers queued up (i.e. the minimum
1759 * number of buffers required for the DMA engine to function). If the
1760 * @start_streaming op fails it is supposed to return all the driver-owned
1761 * buffers back to vb2 in state QUEUED. Check if that happened and if
1762 * not warn and reclaim them forcefully.
02f142ec
HV
1763 */
1764static int vb2_start_streaming(struct vb2_queue *q)
1765{
b3379c62 1766 struct vb2_buffer *vb;
02f142ec
HV
1767 int ret;
1768
02f142ec 1769 /*
b3379c62
HV
1770 * If any buffers were queued before streamon,
1771 * we can now pass them to driver for processing.
02f142ec 1772 */
b3379c62
HV
1773 list_for_each_entry(vb, &q->queued_list, queued_entry)
1774 __enqueue_in_driver(vb);
1775
1776 /* Tell the driver to start streaming */
bd994ddb 1777 q->start_streaming_called = 1;
b3379c62
HV
1778 ret = call_qop(q, start_streaming, q,
1779 atomic_read(&q->owned_by_drv_count));
b3379c62 1780 if (!ret)
02f142ec 1781 return 0;
b3379c62 1782
bd994ddb
LP
1783 q->start_streaming_called = 0;
1784
fd4354cf 1785 dprintk(1, "driver refused to start streaming\n");
23cd08c8
HV
1786 /*
1787 * If you see this warning, then the driver isn't cleaning up properly
1788 * after a failed start_streaming(). See the start_streaming()
1789 * documentation in videobuf2-core.h for more information how buffers
1790 * should be returned to vb2 in start_streaming().
1791 */
b3379c62
HV
1792 if (WARN_ON(atomic_read(&q->owned_by_drv_count))) {
1793 unsigned i;
1794
1795 /*
1796 * Forcefully reclaim buffers if the driver did not
1797 * correctly return them to vb2.
1798 */
1799 for (i = 0; i < q->num_buffers; ++i) {
1800 vb = q->bufs[i];
1801 if (vb->state == VB2_BUF_STATE_ACTIVE)
1802 vb2_buffer_done(vb, VB2_BUF_STATE_QUEUED);
1803 }
1804 /* Must be zero now */
1805 WARN_ON(atomic_read(&q->owned_by_drv_count));
02f142ec 1806 }
bf3593d9
HV
1807 /*
1808 * If done_list is not empty, then start_streaming() didn't call
1809 * vb2_buffer_done(vb, VB2_BUF_STATE_QUEUED) but STATE_ERROR or
1810 * STATE_DONE.
1811 */
1812 WARN_ON(!list_empty(&q->done_list));
02f142ec
HV
1813 return ret;
1814}
1815
b2f2f047 1816static int vb2_internal_qbuf(struct vb2_queue *q, struct v4l2_buffer *b)
012043b8 1817{
4138111a
HV
1818 int ret = vb2_queue_or_prepare_buf(q, b, "qbuf");
1819 struct vb2_buffer *vb;
1820
1821 if (ret)
1822 return ret;
1823
1824 vb = q->bufs[b->index];
e23ccc0a 1825
ebc087d0
GL
1826 switch (vb->state) {
1827 case VB2_BUF_STATE_DEQUEUED:
1828 ret = __buf_prepare(vb, b);
1829 if (ret)
012043b8 1830 return ret;
4138111a 1831 break;
ebc087d0
GL
1832 case VB2_BUF_STATE_PREPARED:
1833 break;
b18a8ff2 1834 case VB2_BUF_STATE_PREPARING:
fd4354cf 1835 dprintk(1, "buffer still being prepared\n");
b18a8ff2 1836 return -EINVAL;
ebc087d0 1837 default:
fd4354cf 1838 dprintk(1, "invalid buffer state %d\n", vb->state);
012043b8 1839 return -EINVAL;
e23ccc0a
PO
1840 }
1841
e23ccc0a
PO
1842 /*
1843 * Add to the queued buffers list, a buffer will stay on it until
1844 * dequeued in dqbuf.
1845 */
1846 list_add_tail(&vb->queued_entry, &q->queued_list);
b3379c62 1847 q->queued_count++;
58d75f4b 1848 q->waiting_for_buffers = false;
e23ccc0a 1849 vb->state = VB2_BUF_STATE_QUEUED;
f1343281
HV
1850 if (V4L2_TYPE_IS_OUTPUT(q->type)) {
1851 /*
1852 * For output buffers copy the timestamp if needed,
1853 * and the timecode field and flag if needed.
1854 */
c57ff792
SA
1855 if ((q->timestamp_flags & V4L2_BUF_FLAG_TIMESTAMP_MASK) ==
1856 V4L2_BUF_FLAG_TIMESTAMP_COPY)
f1343281
HV
1857 vb->v4l2_buf.timestamp = b->timestamp;
1858 vb->v4l2_buf.flags |= b->flags & V4L2_BUF_FLAG_TIMECODE;
1859 if (b->flags & V4L2_BUF_FLAG_TIMECODE)
1860 vb->v4l2_buf.timecode = b->timecode;
1861 }
e23ccc0a
PO
1862
1863 /*
1864 * If already streaming, give the buffer to driver for processing.
1865 * If not, the buffer will be given to driver on next streamon.
1866 */
b3379c62 1867 if (q->start_streaming_called)
e23ccc0a
PO
1868 __enqueue_in_driver(vb);
1869
4138111a
HV
1870 /* Fill buffer information for the userspace */
1871 __fill_v4l2_buffer(vb, b);
21db3e07 1872
b3379c62
HV
1873 /*
1874 * If streamon has been called, and we haven't yet called
1875 * start_streaming() since not enough buffers were queued, and
1876 * we now have reached the minimum number of queued buffers,
1877 * then we can finally call start_streaming().
1878 */
1879 if (q->streaming && !q->start_streaming_called &&
1880 q->queued_count >= q->min_buffers_needed) {
02f142ec
HV
1881 ret = vb2_start_streaming(q);
1882 if (ret)
1883 return ret;
1884 }
1885
fd4354cf 1886 dprintk(1, "qbuf of buffer %d succeeded\n", vb->v4l2_buf.index);
4138111a 1887 return 0;
e23ccc0a 1888}
b2f2f047
HV
1889
1890/**
1891 * vb2_qbuf() - Queue a buffer from userspace
1892 * @q: videobuf2 queue
1893 * @b: buffer structure passed from userspace to vidioc_qbuf handler
1894 * in driver
1895 *
1896 * Should be called from vidioc_qbuf ioctl handler of a driver.
1897 * This function:
1898 * 1) verifies the passed buffer,
1899 * 2) if necessary, calls buf_prepare callback in the driver (if provided), in
1900 * which driver-specific buffer initialization can be performed,
1901 * 3) if streaming is on, queues the buffer in driver by the means of buf_queue
1902 * callback for processing.
1903 *
1904 * The return values from this function are intended to be directly returned
1905 * from vidioc_qbuf handler in driver.
1906 */
1907int vb2_qbuf(struct vb2_queue *q, struct v4l2_buffer *b)
1908{
74753cff 1909 if (vb2_fileio_is_active(q)) {
fd4354cf 1910 dprintk(1, "file io in progress\n");
b2f2f047
HV
1911 return -EBUSY;
1912 }
1913
1914 return vb2_internal_qbuf(q, b);
1915}
e23ccc0a
PO
1916EXPORT_SYMBOL_GPL(vb2_qbuf);
1917
1918/**
1919 * __vb2_wait_for_done_vb() - wait for a buffer to become available
1920 * for dequeuing
1921 *
1922 * Will sleep if required for nonblocking == false.
1923 */
1924static int __vb2_wait_for_done_vb(struct vb2_queue *q, int nonblocking)
1925{
1926 /*
1927 * All operations on vb_done_list are performed under done_lock
1928 * spinlock protection. However, buffers may be removed from
1929 * it and returned to userspace only while holding both driver's
1930 * lock and the done_lock spinlock. Thus we can be sure that as
1931 * long as we hold the driver's lock, the list will remain not
1932 * empty if list_empty() check succeeds.
1933 */
1934
1935 for (;;) {
1936 int ret;
1937
1938 if (!q->streaming) {
3050040b 1939 dprintk(1, "streaming off, will not wait for buffers\n");
e23ccc0a
PO
1940 return -EINVAL;
1941 }
1942
4bb7267d
LP
1943 if (q->error) {
1944 dprintk(1, "Queue in error state, will not wait for buffers\n");
1945 return -EIO;
1946 }
1947
e23ccc0a
PO
1948 if (!list_empty(&q->done_list)) {
1949 /*
1950 * Found a buffer that we were waiting for.
1951 */
1952 break;
1953 }
1954
1955 if (nonblocking) {
3050040b 1956 dprintk(1, "nonblocking and no buffers to dequeue, "
e23ccc0a
PO
1957 "will not wait\n");
1958 return -EAGAIN;
1959 }
1960
1961 /*
1962 * We are streaming and blocking, wait for another buffer to
1963 * become ready or for streamoff. Driver's lock is released to
1964 * allow streamoff or qbuf to be called while waiting.
1965 */
a1d36d8c 1966 call_void_qop(q, wait_prepare, q);
e23ccc0a
PO
1967
1968 /*
1969 * All locks have been released, it is safe to sleep now.
1970 */
3050040b 1971 dprintk(3, "will sleep waiting for buffers\n");
e23ccc0a 1972 ret = wait_event_interruptible(q->done_wq,
4bb7267d
LP
1973 !list_empty(&q->done_list) || !q->streaming ||
1974 q->error);
e23ccc0a
PO
1975
1976 /*
1977 * We need to reevaluate both conditions again after reacquiring
1978 * the locks or return an error if one occurred.
1979 */
a1d36d8c 1980 call_void_qop(q, wait_finish, q);
32a77260 1981 if (ret) {
3050040b 1982 dprintk(1, "sleep was interrupted\n");
e23ccc0a 1983 return ret;
32a77260 1984 }
e23ccc0a
PO
1985 }
1986 return 0;
1987}
1988
1989/**
1990 * __vb2_get_done_vb() - get a buffer ready for dequeuing
1991 *
1992 * Will sleep if required for nonblocking == false.
1993 */
1994static int __vb2_get_done_vb(struct vb2_queue *q, struct vb2_buffer **vb,
32a77260 1995 struct v4l2_buffer *b, int nonblocking)
e23ccc0a
PO
1996{
1997 unsigned long flags;
1998 int ret;
1999
2000 /*
2001 * Wait for at least one buffer to become available on the done_list.
2002 */
2003 ret = __vb2_wait_for_done_vb(q, nonblocking);
2004 if (ret)
2005 return ret;
2006
2007 /*
2008 * Driver's lock has been held since we last verified that done_list
2009 * is not empty, so no need for another list_empty(done_list) check.
2010 */
2011 spin_lock_irqsave(&q->done_lock, flags);
2012 *vb = list_first_entry(&q->done_list, struct vb2_buffer, done_entry);
32a77260
HV
2013 /*
2014 * Only remove the buffer from done_list if v4l2_buffer can handle all
2015 * the planes.
2016 */
2017 ret = __verify_planes_array(*vb, b);
2018 if (!ret)
2019 list_del(&(*vb)->done_entry);
e23ccc0a
PO
2020 spin_unlock_irqrestore(&q->done_lock, flags);
2021
32a77260 2022 return ret;
e23ccc0a
PO
2023}
2024
2025/**
2026 * vb2_wait_for_all_buffers() - wait until all buffers are given back to vb2
2027 * @q: videobuf2 queue
2028 *
2029 * This function will wait until all buffers that have been given to the driver
2030 * by buf_queue() are given back to vb2 with vb2_buffer_done(). It doesn't call
2031 * wait_prepare, wait_finish pair. It is intended to be called with all locks
2032 * taken, for example from stop_streaming() callback.
2033 */
2034int vb2_wait_for_all_buffers(struct vb2_queue *q)
2035{
2036 if (!q->streaming) {
3050040b 2037 dprintk(1, "streaming off, will not wait for buffers\n");
e23ccc0a
PO
2038 return -EINVAL;
2039 }
2040
b3379c62 2041 if (q->start_streaming_called)
6ea3b980 2042 wait_event(q->done_wq, !atomic_read(&q->owned_by_drv_count));
e23ccc0a
PO
2043 return 0;
2044}
2045EXPORT_SYMBOL_GPL(vb2_wait_for_all_buffers);
2046
c5384048
SS
2047/**
2048 * __vb2_dqbuf() - bring back the buffer to the DEQUEUED state
2049 */
2050static void __vb2_dqbuf(struct vb2_buffer *vb)
2051{
2052 struct vb2_queue *q = vb->vb2_queue;
2053 unsigned int i;
2054
2055 /* nothing to do if the buffer is already dequeued */
2056 if (vb->state == VB2_BUF_STATE_DEQUEUED)
2057 return;
2058
2059 vb->state = VB2_BUF_STATE_DEQUEUED;
2060
2061 /* unmap DMABUF buffer */
2062 if (q->memory == V4L2_MEMORY_DMABUF)
2063 for (i = 0; i < vb->num_planes; ++i) {
2064 if (!vb->planes[i].dbuf_mapped)
2065 continue;
a1d36d8c 2066 call_void_memop(vb, unmap_dmabuf, vb->planes[i].mem_priv);
c5384048
SS
2067 vb->planes[i].dbuf_mapped = 0;
2068 }
2069}
2070
b2f2f047 2071static int vb2_internal_dqbuf(struct vb2_queue *q, struct v4l2_buffer *b, bool nonblocking)
e23ccc0a
PO
2072{
2073 struct vb2_buffer *vb = NULL;
2074 int ret;
2075
2076 if (b->type != q->type) {
fd4354cf 2077 dprintk(1, "invalid buffer type\n");
e23ccc0a
PO
2078 return -EINVAL;
2079 }
32a77260
HV
2080 ret = __vb2_get_done_vb(q, &vb, b, nonblocking);
2081 if (ret < 0)
e23ccc0a 2082 return ret;
e23ccc0a 2083
e23ccc0a
PO
2084 switch (vb->state) {
2085 case VB2_BUF_STATE_DONE:
3050040b 2086 dprintk(3, "returning done buffer\n");
e23ccc0a
PO
2087 break;
2088 case VB2_BUF_STATE_ERROR:
3050040b 2089 dprintk(3, "returning done buffer with errors\n");
e23ccc0a
PO
2090 break;
2091 default:
3050040b 2092 dprintk(1, "invalid buffer state\n");
e23ccc0a
PO
2093 return -EINVAL;
2094 }
2095
a1d36d8c 2096 call_void_vb_qop(vb, buf_finish, vb);
9cf3c31a 2097
e23ccc0a
PO
2098 /* Fill buffer information for the userspace */
2099 __fill_v4l2_buffer(vb, b);
2100 /* Remove from videobuf queue */
2101 list_del(&vb->queued_entry);
b3379c62 2102 q->queued_count--;
c5384048
SS
2103 /* go back to dequeued state */
2104 __vb2_dqbuf(vb);
e23ccc0a
PO
2105
2106 dprintk(1, "dqbuf of buffer %d, with state %d\n",
2107 vb->v4l2_buf.index, vb->state);
2108
e23ccc0a
PO
2109 return 0;
2110}
b2f2f047
HV
2111
2112/**
2113 * vb2_dqbuf() - Dequeue a buffer to the userspace
2114 * @q: videobuf2 queue
2115 * @b: buffer structure passed from userspace to vidioc_dqbuf handler
2116 * in driver
2117 * @nonblocking: if true, this call will not sleep waiting for a buffer if no
2118 * buffers ready for dequeuing are present. Normally the driver
2119 * would be passing (file->f_flags & O_NONBLOCK) here
2120 *
2121 * Should be called from vidioc_dqbuf ioctl handler of a driver.
2122 * This function:
2123 * 1) verifies the passed buffer,
2124 * 2) calls buf_finish callback in the driver (if provided), in which
2125 * driver can perform any additional operations that may be required before
2126 * returning the buffer to userspace, such as cache sync,
2127 * 3) the buffer struct members are filled with relevant information for
2128 * the userspace.
2129 *
2130 * The return values from this function are intended to be directly returned
2131 * from vidioc_dqbuf handler in driver.
2132 */
2133int vb2_dqbuf(struct vb2_queue *q, struct v4l2_buffer *b, bool nonblocking)
2134{
74753cff 2135 if (vb2_fileio_is_active(q)) {
fd4354cf 2136 dprintk(1, "file io in progress\n");
b2f2f047
HV
2137 return -EBUSY;
2138 }
2139 return vb2_internal_dqbuf(q, b, nonblocking);
2140}
e23ccc0a
PO
2141EXPORT_SYMBOL_GPL(vb2_dqbuf);
2142
bd323e28
MS
2143/**
2144 * __vb2_queue_cancel() - cancel and stop (pause) streaming
2145 *
2146 * Removes all queued buffers from driver's queue and all buffers queued by
2147 * userspace from videobuf's queue. Returns to state after reqbufs.
2148 */
2149static void __vb2_queue_cancel(struct vb2_queue *q)
2150{
2151 unsigned int i;
2152
2153 /*
2154 * Tell driver to stop all transactions and release all queued
2155 * buffers.
2156 */
b3379c62 2157 if (q->start_streaming_called)
e37559b2 2158 call_void_qop(q, stop_streaming, q);
b3379c62 2159
23cd08c8
HV
2160 /*
2161 * If you see this warning, then the driver isn't cleaning up properly
2162 * in stop_streaming(). See the stop_streaming() documentation in
2163 * videobuf2-core.h for more information how buffers should be returned
2164 * to vb2 in stop_streaming().
2165 */
b3379c62
HV
2166 if (WARN_ON(atomic_read(&q->owned_by_drv_count))) {
2167 for (i = 0; i < q->num_buffers; ++i)
2168 if (q->bufs[i]->state == VB2_BUF_STATE_ACTIVE)
2169 vb2_buffer_done(q->bufs[i], VB2_BUF_STATE_ERROR);
2170 /* Must be zero now */
2171 WARN_ON(atomic_read(&q->owned_by_drv_count));
2172 }
bd323e28 2173
b646f0b7
LP
2174 q->streaming = 0;
2175 q->start_streaming_called = 0;
2176 q->queued_count = 0;
4bb7267d 2177 q->error = 0;
b646f0b7 2178
bd323e28
MS
2179 /*
2180 * Remove all buffers from videobuf's list...
2181 */
2182 INIT_LIST_HEAD(&q->queued_list);
2183 /*
2184 * ...and done list; userspace will not receive any buffers it
2185 * has not already dequeued before initiating cancel.
2186 */
2187 INIT_LIST_HEAD(&q->done_list);
6ea3b980 2188 atomic_set(&q->owned_by_drv_count, 0);
bd323e28
MS
2189 wake_up_all(&q->done_wq);
2190
2191 /*
2192 * Reinitialize all buffers for next use.
9c0863b1
HV
2193 * Make sure to call buf_finish for any queued buffers. Normally
2194 * that's done in dqbuf, but that's not going to happen when we
2195 * cancel the whole queue. Note: this code belongs here, not in
2196 * __vb2_dqbuf() since in vb2_internal_dqbuf() there is a critical
2197 * call to __fill_v4l2_buffer() after buf_finish(). That order can't
2198 * be changed, so we can't move the buf_finish() to __vb2_dqbuf().
bd323e28 2199 */
9c0863b1
HV
2200 for (i = 0; i < q->num_buffers; ++i) {
2201 struct vb2_buffer *vb = q->bufs[i];
2202
2203 if (vb->state != VB2_BUF_STATE_DEQUEUED) {
2204 vb->state = VB2_BUF_STATE_PREPARED;
a1d36d8c 2205 call_void_vb_qop(vb, buf_finish, vb);
9c0863b1
HV
2206 }
2207 __vb2_dqbuf(vb);
2208 }
bd323e28
MS
2209}
2210
b2f2f047 2211static int vb2_internal_streamon(struct vb2_queue *q, enum v4l2_buf_type type)
e23ccc0a 2212{
5db2c3ba 2213 int ret;
e23ccc0a
PO
2214
2215 if (type != q->type) {
fd4354cf 2216 dprintk(1, "invalid stream type\n");
e23ccc0a
PO
2217 return -EINVAL;
2218 }
2219
2220 if (q->streaming) {
fd4354cf 2221 dprintk(3, "already streaming\n");
f956035c 2222 return 0;
e23ccc0a
PO
2223 }
2224
548df783 2225 if (!q->num_buffers) {
fd4354cf 2226 dprintk(1, "no buffers have been allocated\n");
548df783
RR
2227 return -EINVAL;
2228 }
2229
b3379c62 2230 if (q->num_buffers < q->min_buffers_needed) {
fd4354cf 2231 dprintk(1, "need at least %u allocated buffers\n",
b3379c62
HV
2232 q->min_buffers_needed);
2233 return -EINVAL;
2234 }
249f5a58 2235
e23ccc0a 2236 /*
b3379c62
HV
2237 * Tell driver to start streaming provided sufficient buffers
2238 * are available.
e23ccc0a 2239 */
b3379c62
HV
2240 if (q->queued_count >= q->min_buffers_needed) {
2241 ret = vb2_start_streaming(q);
2242 if (ret) {
2243 __vb2_queue_cancel(q);
2244 return ret;
2245 }
5db2c3ba
PO
2246 }
2247
2248 q->streaming = 1;
e23ccc0a 2249
fd4354cf 2250 dprintk(3, "successful\n");
e23ccc0a
PO
2251 return 0;
2252}
e23ccc0a 2253
4bb7267d
LP
2254/**
2255 * vb2_queue_error() - signal a fatal error on the queue
2256 * @q: videobuf2 queue
2257 *
2258 * Flag that a fatal unrecoverable error has occurred and wake up all processes
2259 * waiting on the queue. Polling will now set POLLERR and queuing and dequeuing
2260 * buffers will return -EIO.
2261 *
2262 * The error flag will be cleared when cancelling the queue, either from
2263 * vb2_streamoff or vb2_queue_release. Drivers should thus not call this
2264 * function before starting the stream, otherwise the error flag will remain set
2265 * until the queue is released when closing the device node.
2266 */
2267void vb2_queue_error(struct vb2_queue *q)
2268{
2269 q->error = 1;
2270
2271 wake_up_all(&q->done_wq);
2272}
2273EXPORT_SYMBOL_GPL(vb2_queue_error);
2274
e23ccc0a 2275/**
b2f2f047 2276 * vb2_streamon - start streaming
e23ccc0a 2277 * @q: videobuf2 queue
b2f2f047 2278 * @type: type argument passed from userspace to vidioc_streamon handler
e23ccc0a 2279 *
b2f2f047 2280 * Should be called from vidioc_streamon handler of a driver.
e23ccc0a 2281 * This function:
b2f2f047
HV
2282 * 1) verifies current state
2283 * 2) passes any previously queued buffers to the driver and starts streaming
e23ccc0a 2284 *
e23ccc0a 2285 * The return values from this function are intended to be directly returned
b2f2f047 2286 * from vidioc_streamon handler in the driver.
e23ccc0a 2287 */
b2f2f047 2288int vb2_streamon(struct vb2_queue *q, enum v4l2_buf_type type)
e23ccc0a 2289{
74753cff 2290 if (vb2_fileio_is_active(q)) {
fd4354cf 2291 dprintk(1, "file io in progress\n");
b25748fe
MS
2292 return -EBUSY;
2293 }
b2f2f047
HV
2294 return vb2_internal_streamon(q, type);
2295}
2296EXPORT_SYMBOL_GPL(vb2_streamon);
b25748fe 2297
b2f2f047
HV
2298static int vb2_internal_streamoff(struct vb2_queue *q, enum v4l2_buf_type type)
2299{
e23ccc0a 2300 if (type != q->type) {
fd4354cf 2301 dprintk(1, "invalid stream type\n");
e23ccc0a
PO
2302 return -EINVAL;
2303 }
2304
e23ccc0a
PO
2305 /*
2306 * Cancel will pause streaming and remove all buffers from the driver
2307 * and videobuf, effectively returning control over them to userspace.
3f1a9a33
HV
2308 *
2309 * Note that we do this even if q->streaming == 0: if you prepare or
2310 * queue buffers, and then call streamoff without ever having called
2311 * streamon, you would still expect those buffers to be returned to
2312 * their normal dequeued state.
e23ccc0a
PO
2313 */
2314 __vb2_queue_cancel(q);
58d75f4b 2315 q->waiting_for_buffers = !V4L2_TYPE_IS_OUTPUT(q->type);
e23ccc0a 2316
fd4354cf 2317 dprintk(3, "successful\n");
e23ccc0a
PO
2318 return 0;
2319}
b2f2f047
HV
2320
2321/**
2322 * vb2_streamoff - stop streaming
2323 * @q: videobuf2 queue
2324 * @type: type argument passed from userspace to vidioc_streamoff handler
2325 *
2326 * Should be called from vidioc_streamoff handler of a driver.
2327 * This function:
2328 * 1) verifies current state,
2329 * 2) stop streaming and dequeues any queued buffers, including those previously
2330 * passed to the driver (after waiting for the driver to finish).
2331 *
2332 * This call can be used for pausing playback.
2333 * The return values from this function are intended to be directly returned
2334 * from vidioc_streamoff handler in the driver
2335 */
2336int vb2_streamoff(struct vb2_queue *q, enum v4l2_buf_type type)
2337{
74753cff 2338 if (vb2_fileio_is_active(q)) {
fd4354cf 2339 dprintk(1, "file io in progress\n");
b2f2f047
HV
2340 return -EBUSY;
2341 }
2342 return vb2_internal_streamoff(q, type);
2343}
e23ccc0a
PO
2344EXPORT_SYMBOL_GPL(vb2_streamoff);
2345
2346/**
2347 * __find_plane_by_offset() - find plane associated with the given offset off
2348 */
2349static int __find_plane_by_offset(struct vb2_queue *q, unsigned long off,
2350 unsigned int *_buffer, unsigned int *_plane)
2351{
2352 struct vb2_buffer *vb;
2353 unsigned int buffer, plane;
2354
2355 /*
2356 * Go over all buffers and their planes, comparing the given offset
2357 * with an offset assigned to each plane. If a match is found,
2358 * return its buffer and plane numbers.
2359 */
2360 for (buffer = 0; buffer < q->num_buffers; ++buffer) {
2361 vb = q->bufs[buffer];
2362
2363 for (plane = 0; plane < vb->num_planes; ++plane) {
2364 if (vb->v4l2_planes[plane].m.mem_offset == off) {
2365 *_buffer = buffer;
2366 *_plane = plane;
2367 return 0;
2368 }
2369 }
2370 }
2371
2372 return -EINVAL;
2373}
2374
83ae7c5a
TS
2375/**
2376 * vb2_expbuf() - Export a buffer as a file descriptor
2377 * @q: videobuf2 queue
2378 * @eb: export buffer structure passed from userspace to vidioc_expbuf
2379 * handler in driver
2380 *
2381 * The return values from this function are intended to be directly returned
2382 * from vidioc_expbuf handler in driver.
2383 */
2384int vb2_expbuf(struct vb2_queue *q, struct v4l2_exportbuffer *eb)
2385{
2386 struct vb2_buffer *vb = NULL;
2387 struct vb2_plane *vb_plane;
2388 int ret;
2389 struct dma_buf *dbuf;
2390
2391 if (q->memory != V4L2_MEMORY_MMAP) {
3050040b 2392 dprintk(1, "queue is not currently set up for mmap\n");
83ae7c5a
TS
2393 return -EINVAL;
2394 }
2395
2396 if (!q->mem_ops->get_dmabuf) {
3050040b 2397 dprintk(1, "queue does not support DMA buffer exporting\n");
83ae7c5a
TS
2398 return -EINVAL;
2399 }
2400
ea3aba84 2401 if (eb->flags & ~(O_CLOEXEC | O_ACCMODE)) {
3050040b 2402 dprintk(1, "queue does support only O_CLOEXEC and access mode flags\n");
83ae7c5a
TS
2403 return -EINVAL;
2404 }
2405
2406 if (eb->type != q->type) {
fd4354cf 2407 dprintk(1, "invalid buffer type\n");
83ae7c5a
TS
2408 return -EINVAL;
2409 }
2410
2411 if (eb->index >= q->num_buffers) {
2412 dprintk(1, "buffer index out of range\n");
2413 return -EINVAL;
2414 }
2415
2416 vb = q->bufs[eb->index];
2417
2418 if (eb->plane >= vb->num_planes) {
2419 dprintk(1, "buffer plane out of range\n");
2420 return -EINVAL;
2421 }
2422
74753cff
HV
2423 if (vb2_fileio_is_active(q)) {
2424 dprintk(1, "expbuf: file io in progress\n");
2425 return -EBUSY;
2426 }
2427
83ae7c5a
TS
2428 vb_plane = &vb->planes[eb->plane];
2429
a1d36d8c 2430 dbuf = call_ptr_memop(vb, get_dmabuf, vb_plane->mem_priv, eb->flags & O_ACCMODE);
83ae7c5a 2431 if (IS_ERR_OR_NULL(dbuf)) {
3050040b 2432 dprintk(1, "failed to export buffer %d, plane %d\n",
83ae7c5a
TS
2433 eb->index, eb->plane);
2434 return -EINVAL;
2435 }
2436
ea3aba84 2437 ret = dma_buf_fd(dbuf, eb->flags & ~O_ACCMODE);
83ae7c5a
TS
2438 if (ret < 0) {
2439 dprintk(3, "buffer %d, plane %d failed to export (%d)\n",
2440 eb->index, eb->plane, ret);
2441 dma_buf_put(dbuf);
2442 return ret;
2443 }
2444
2445 dprintk(3, "buffer %d, plane %d exported as %d descriptor\n",
2446 eb->index, eb->plane, ret);
2447 eb->fd = ret;
2448
2449 return 0;
2450}
2451EXPORT_SYMBOL_GPL(vb2_expbuf);
2452
e23ccc0a
PO
2453/**
2454 * vb2_mmap() - map video buffers into application address space
2455 * @q: videobuf2 queue
2456 * @vma: vma passed to the mmap file operation handler in the driver
2457 *
2458 * Should be called from mmap file operation handler of a driver.
2459 * This function maps one plane of one of the available video buffers to
2460 * userspace. To map whole video memory allocated on reqbufs, this function
2461 * has to be called once per each plane per each buffer previously allocated.
2462 *
2463 * When the userspace application calls mmap, it passes to it an offset returned
2464 * to it earlier by the means of vidioc_querybuf handler. That offset acts as
2465 * a "cookie", which is then used to identify the plane to be mapped.
2466 * This function finds a plane with a matching offset and a mapping is performed
2467 * by the means of a provided memory operation.
2468 *
2469 * The return values from this function are intended to be directly returned
2470 * from the mmap handler in driver.
2471 */
2472int vb2_mmap(struct vb2_queue *q, struct vm_area_struct *vma)
2473{
2474 unsigned long off = vma->vm_pgoff << PAGE_SHIFT;
e23ccc0a 2475 struct vb2_buffer *vb;
ce9c2244 2476 unsigned int buffer = 0, plane = 0;
e23ccc0a 2477 int ret;
7f841459 2478 unsigned long length;
e23ccc0a
PO
2479
2480 if (q->memory != V4L2_MEMORY_MMAP) {
3050040b 2481 dprintk(1, "queue is not currently set up for mmap\n");
e23ccc0a
PO
2482 return -EINVAL;
2483 }
2484
2485 /*
2486 * Check memory area access mode.
2487 */
2488 if (!(vma->vm_flags & VM_SHARED)) {
3050040b 2489 dprintk(1, "invalid vma flags, VM_SHARED needed\n");
e23ccc0a
PO
2490 return -EINVAL;
2491 }
2492 if (V4L2_TYPE_IS_OUTPUT(q->type)) {
2493 if (!(vma->vm_flags & VM_WRITE)) {
3050040b 2494 dprintk(1, "invalid vma flags, VM_WRITE needed\n");
e23ccc0a
PO
2495 return -EINVAL;
2496 }
2497 } else {
2498 if (!(vma->vm_flags & VM_READ)) {
3050040b 2499 dprintk(1, "invalid vma flags, VM_READ needed\n");
e23ccc0a
PO
2500 return -EINVAL;
2501 }
2502 }
74753cff
HV
2503 if (vb2_fileio_is_active(q)) {
2504 dprintk(1, "mmap: file io in progress\n");
2505 return -EBUSY;
2506 }
e23ccc0a
PO
2507
2508 /*
2509 * Find the plane corresponding to the offset passed by userspace.
2510 */
2511 ret = __find_plane_by_offset(q, off, &buffer, &plane);
2512 if (ret)
2513 return ret;
2514
2515 vb = q->bufs[buffer];
e23ccc0a 2516
7f841459
MCC
2517 /*
2518 * MMAP requires page_aligned buffers.
2519 * The buffer length was page_aligned at __vb2_buf_mem_alloc(),
2520 * so, we need to do the same here.
2521 */
2522 length = PAGE_ALIGN(vb->v4l2_planes[plane].length);
2523 if (length < (vma->vm_end - vma->vm_start)) {
2524 dprintk(1,
2525 "MMAP invalid, as it would overflow buffer length\n");
068a0df7
SWK
2526 return -EINVAL;
2527 }
2528
f035eb4e 2529 mutex_lock(&q->mmap_lock);
b5b4541e 2530 ret = call_memop(vb, mmap, vb->planes[plane].mem_priv, vma);
f035eb4e 2531 mutex_unlock(&q->mmap_lock);
a1d36d8c 2532 if (ret)
e23ccc0a
PO
2533 return ret;
2534
3050040b 2535 dprintk(3, "buffer %d, plane %d successfully mapped\n", buffer, plane);
e23ccc0a
PO
2536 return 0;
2537}
2538EXPORT_SYMBOL_GPL(vb2_mmap);
2539
6f524ec1
SJ
2540#ifndef CONFIG_MMU
2541unsigned long vb2_get_unmapped_area(struct vb2_queue *q,
2542 unsigned long addr,
2543 unsigned long len,
2544 unsigned long pgoff,
2545 unsigned long flags)
2546{
2547 unsigned long off = pgoff << PAGE_SHIFT;
2548 struct vb2_buffer *vb;
2549 unsigned int buffer, plane;
f035eb4e 2550 void *vaddr;
6f524ec1
SJ
2551 int ret;
2552
2553 if (q->memory != V4L2_MEMORY_MMAP) {
3050040b 2554 dprintk(1, "queue is not currently set up for mmap\n");
6f524ec1
SJ
2555 return -EINVAL;
2556 }
2557
2558 /*
2559 * Find the plane corresponding to the offset passed by userspace.
2560 */
2561 ret = __find_plane_by_offset(q, off, &buffer, &plane);
2562 if (ret)
2563 return ret;
2564
2565 vb = q->bufs[buffer];
2566
f035eb4e
HV
2567 vaddr = vb2_plane_vaddr(vb, plane);
2568 return vaddr ? (unsigned long)vaddr : -EINVAL;
6f524ec1
SJ
2569}
2570EXPORT_SYMBOL_GPL(vb2_get_unmapped_area);
2571#endif
2572
b25748fe
MS
2573static int __vb2_init_fileio(struct vb2_queue *q, int read);
2574static int __vb2_cleanup_fileio(struct vb2_queue *q);
e23ccc0a
PO
2575
2576/**
2577 * vb2_poll() - implements poll userspace operation
2578 * @q: videobuf2 queue
2579 * @file: file argument passed to the poll file operation handler
2580 * @wait: wait argument passed to the poll file operation handler
2581 *
2582 * This function implements poll file operation handler for a driver.
2583 * For CAPTURE queues, if a buffer is ready to be dequeued, the userspace will
2584 * be informed that the file descriptor of a video device is available for
2585 * reading.
2586 * For OUTPUT queues, if a buffer is ready to be dequeued, the file descriptor
2587 * will be reported as available for writing.
2588 *
95213ceb
HV
2589 * If the driver uses struct v4l2_fh, then vb2_poll() will also check for any
2590 * pending events.
2591 *
e23ccc0a
PO
2592 * The return values from this function are intended to be directly returned
2593 * from poll handler in driver.
2594 */
2595unsigned int vb2_poll(struct vb2_queue *q, struct file *file, poll_table *wait)
2596{
95213ceb 2597 struct video_device *vfd = video_devdata(file);
bf5c7cbb 2598 unsigned long req_events = poll_requested_events(wait);
e23ccc0a 2599 struct vb2_buffer *vb = NULL;
95213ceb
HV
2600 unsigned int res = 0;
2601 unsigned long flags;
2602
2603 if (test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags)) {
2604 struct v4l2_fh *fh = file->private_data;
2605
2606 if (v4l2_event_pending(fh))
2607 res = POLLPRI;
2608 else if (req_events & POLLPRI)
2609 poll_wait(file, &fh->wait, wait);
2610 }
e23ccc0a 2611
cd13823f
HV
2612 if (!V4L2_TYPE_IS_OUTPUT(q->type) && !(req_events & (POLLIN | POLLRDNORM)))
2613 return res;
2614 if (V4L2_TYPE_IS_OUTPUT(q->type) && !(req_events & (POLLOUT | POLLWRNORM)))
2615 return res;
2616
b25748fe 2617 /*
4ffabdb3 2618 * Start file I/O emulator only if streaming API has not been used yet.
b25748fe 2619 */
74753cff 2620 if (q->num_buffers == 0 && !vb2_fileio_is_active(q)) {
bf5c7cbb
HV
2621 if (!V4L2_TYPE_IS_OUTPUT(q->type) && (q->io_modes & VB2_READ) &&
2622 (req_events & (POLLIN | POLLRDNORM))) {
95213ceb
HV
2623 if (__vb2_init_fileio(q, 1))
2624 return res | POLLERR;
b25748fe 2625 }
bf5c7cbb
HV
2626 if (V4L2_TYPE_IS_OUTPUT(q->type) && (q->io_modes & VB2_WRITE) &&
2627 (req_events & (POLLOUT | POLLWRNORM))) {
95213ceb
HV
2628 if (__vb2_init_fileio(q, 0))
2629 return res | POLLERR;
b25748fe
MS
2630 /*
2631 * Write to OUTPUT queue can be done immediately.
2632 */
95213ceb 2633 return res | POLLOUT | POLLWRNORM;
b25748fe
MS
2634 }
2635 }
2636
e23ccc0a 2637 /*
58d75f4b
HV
2638 * There is nothing to wait for if the queue isn't streaming, or if the
2639 * error flag is set.
e23ccc0a 2640 */
58d75f4b
HV
2641 if (!vb2_is_streaming(q) || q->error)
2642 return res | POLLERR;
2643 /*
2644 * For compatibility with vb1: if QBUF hasn't been called yet, then
2645 * return POLLERR as well. This only affects capture queues, output
2646 * queues will always initialize waiting_for_buffers to false.
2647 */
2648 if (q->waiting_for_buffers)
95213ceb 2649 return res | POLLERR;
e23ccc0a 2650
1612f20e
HV
2651 /*
2652 * For output streams you can write as long as there are fewer buffers
2653 * queued than there are buffers available.
2654 */
2655 if (V4L2_TYPE_IS_OUTPUT(q->type) && q->queued_count < q->num_buffers)
2656 return res | POLLOUT | POLLWRNORM;
2657
412cb87d
SWK
2658 if (list_empty(&q->done_list))
2659 poll_wait(file, &q->done_wq, wait);
e23ccc0a
PO
2660
2661 /*
2662 * Take first buffer available for dequeuing.
2663 */
2664 spin_lock_irqsave(&q->done_lock, flags);
2665 if (!list_empty(&q->done_list))
2666 vb = list_first_entry(&q->done_list, struct vb2_buffer,
2667 done_entry);
2668 spin_unlock_irqrestore(&q->done_lock, flags);
2669
2670 if (vb && (vb->state == VB2_BUF_STATE_DONE
2671 || vb->state == VB2_BUF_STATE_ERROR)) {
95213ceb
HV
2672 return (V4L2_TYPE_IS_OUTPUT(q->type)) ?
2673 res | POLLOUT | POLLWRNORM :
2674 res | POLLIN | POLLRDNORM;
e23ccc0a 2675 }
95213ceb 2676 return res;
e23ccc0a
PO
2677}
2678EXPORT_SYMBOL_GPL(vb2_poll);
2679
2680/**
2681 * vb2_queue_init() - initialize a videobuf2 queue
2682 * @q: videobuf2 queue; this structure should be allocated in driver
2683 *
2684 * The vb2_queue structure should be allocated by the driver. The driver is
2685 * responsible of clearing it's content and setting initial values for some
2686 * required entries before calling this function.
2687 * q->ops, q->mem_ops, q->type and q->io_modes are mandatory. Please refer
2688 * to the struct vb2_queue description in include/media/videobuf2-core.h
2689 * for more information.
2690 */
2691int vb2_queue_init(struct vb2_queue *q)
2692{
896f38f5
EG
2693 /*
2694 * Sanity check
2695 */
2696 if (WARN_ON(!q) ||
2697 WARN_ON(!q->ops) ||
2698 WARN_ON(!q->mem_ops) ||
2699 WARN_ON(!q->type) ||
2700 WARN_ON(!q->io_modes) ||
2701 WARN_ON(!q->ops->queue_setup) ||
6aa69f99 2702 WARN_ON(!q->ops->buf_queue) ||
872484ce
SA
2703 WARN_ON(q->timestamp_flags &
2704 ~(V4L2_BUF_FLAG_TIMESTAMP_MASK |
2705 V4L2_BUF_FLAG_TSTAMP_SRC_MASK)))
896f38f5 2706 return -EINVAL;
e23ccc0a 2707
6aa69f99 2708 /* Warn that the driver should choose an appropriate timestamp type */
c57ff792
SA
2709 WARN_ON((q->timestamp_flags & V4L2_BUF_FLAG_TIMESTAMP_MASK) ==
2710 V4L2_BUF_FLAG_TIMESTAMP_UNKNOWN);
6aa69f99 2711
e23ccc0a
PO
2712 INIT_LIST_HEAD(&q->queued_list);
2713 INIT_LIST_HEAD(&q->done_list);
2714 spin_lock_init(&q->done_lock);
f035eb4e 2715 mutex_init(&q->mmap_lock);
e23ccc0a
PO
2716 init_waitqueue_head(&q->done_wq);
2717
2718 if (q->buf_struct_size == 0)
2719 q->buf_struct_size = sizeof(struct vb2_buffer);
2720
2721 return 0;
2722}
2723EXPORT_SYMBOL_GPL(vb2_queue_init);
2724
2725/**
2726 * vb2_queue_release() - stop streaming, release the queue and free memory
2727 * @q: videobuf2 queue
2728 *
2729 * This function stops streaming and performs necessary clean ups, including
2730 * freeing video buffer memory. The driver is responsible for freeing
2731 * the vb2_queue structure itself.
2732 */
2733void vb2_queue_release(struct vb2_queue *q)
2734{
b25748fe 2735 __vb2_cleanup_fileio(q);
e23ccc0a 2736 __vb2_queue_cancel(q);
f035eb4e 2737 mutex_lock(&q->mmap_lock);
2d86401c 2738 __vb2_queue_free(q, q->num_buffers);
f035eb4e 2739 mutex_unlock(&q->mmap_lock);
e23ccc0a
PO
2740}
2741EXPORT_SYMBOL_GPL(vb2_queue_release);
2742
b25748fe
MS
2743/**
2744 * struct vb2_fileio_buf - buffer context used by file io emulator
2745 *
2746 * vb2 provides a compatibility layer and emulator of file io (read and
2747 * write) calls on top of streaming API. This structure is used for
2748 * tracking context related to the buffers.
2749 */
2750struct vb2_fileio_buf {
2751 void *vaddr;
2752 unsigned int size;
2753 unsigned int pos;
2754 unsigned int queued:1;
2755};
2756
2757/**
2758 * struct vb2_fileio_data - queue context used by file io emulator
2759 *
4e5a4d8a
HV
2760 * @cur_index: the index of the buffer currently being read from or
2761 * written to. If equal to q->num_buffers then a new buffer
2762 * must be dequeued.
2763 * @initial_index: in the read() case all buffers are queued up immediately
2764 * in __vb2_init_fileio() and __vb2_perform_fileio() just cycles
2765 * buffers. However, in the write() case no buffers are initially
2766 * queued, instead whenever a buffer is full it is queued up by
2767 * __vb2_perform_fileio(). Only once all available buffers have
2768 * been queued up will __vb2_perform_fileio() start to dequeue
2769 * buffers. This means that initially __vb2_perform_fileio()
2770 * needs to know what buffer index to use when it is queuing up
2771 * the buffers for the first time. That initial index is stored
2772 * in this field. Once it is equal to q->num_buffers all
2773 * available buffers have been queued and __vb2_perform_fileio()
2774 * should start the normal dequeue/queue cycle.
2775 *
b25748fe
MS
2776 * vb2 provides a compatibility layer and emulator of file io (read and
2777 * write) calls on top of streaming API. For proper operation it required
2778 * this structure to save the driver state between each call of the read
2779 * or write function.
2780 */
2781struct vb2_fileio_data {
2782 struct v4l2_requestbuffers req;
7bb6edd3 2783 struct v4l2_plane p;
b25748fe
MS
2784 struct v4l2_buffer b;
2785 struct vb2_fileio_buf bufs[VIDEO_MAX_FRAME];
4e5a4d8a
HV
2786 unsigned int cur_index;
2787 unsigned int initial_index;
b25748fe
MS
2788 unsigned int q_count;
2789 unsigned int dq_count;
06e7a9b6
KD
2790 unsigned read_once:1;
2791 unsigned write_immediately:1;
b25748fe
MS
2792};
2793
2794/**
2795 * __vb2_init_fileio() - initialize file io emulator
2796 * @q: videobuf2 queue
2797 * @read: mode selector (1 means read, 0 means write)
2798 */
2799static int __vb2_init_fileio(struct vb2_queue *q, int read)
2800{
2801 struct vb2_fileio_data *fileio;
2802 int i, ret;
2803 unsigned int count = 0;
2804
2805 /*
2806 * Sanity check
2807 */
e4d25816
HV
2808 if (WARN_ON((read && !(q->io_modes & VB2_READ)) ||
2809 (!read && !(q->io_modes & VB2_WRITE))))
2810 return -EINVAL;
b25748fe
MS
2811
2812 /*
2813 * Check if device supports mapping buffers to kernel virtual space.
2814 */
2815 if (!q->mem_ops->vaddr)
2816 return -EBUSY;
2817
2818 /*
2819 * Check if streaming api has not been already activated.
2820 */
2821 if (q->streaming || q->num_buffers > 0)
2822 return -EBUSY;
2823
2824 /*
2825 * Start with count 1, driver can increase it in queue_setup()
2826 */
2827 count = 1;
2828
06e7a9b6
KD
2829 dprintk(3, "setting up file io: mode %s, count %d, read_once %d, write_immediately %d\n",
2830 (read) ? "read" : "write", count, q->fileio_read_once,
2831 q->fileio_write_immediately);
b25748fe
MS
2832
2833 fileio = kzalloc(sizeof(struct vb2_fileio_data), GFP_KERNEL);
2834 if (fileio == NULL)
2835 return -ENOMEM;
2836
06e7a9b6
KD
2837 fileio->read_once = q->fileio_read_once;
2838 fileio->write_immediately = q->fileio_write_immediately;
b25748fe
MS
2839
2840 /*
2841 * Request buffers and use MMAP type to force driver
2842 * to allocate buffers by itself.
2843 */
2844 fileio->req.count = count;
2845 fileio->req.memory = V4L2_MEMORY_MMAP;
2846 fileio->req.type = q->type;
74753cff
HV
2847 q->fileio = fileio;
2848 ret = __reqbufs(q, &fileio->req);
b25748fe
MS
2849 if (ret)
2850 goto err_kfree;
2851
2852 /*
2853 * Check if plane_count is correct
2854 * (multiplane buffers are not supported).
2855 */
2856 if (q->bufs[0]->num_planes != 1) {
b25748fe
MS
2857 ret = -EBUSY;
2858 goto err_reqbufs;
2859 }
2860
2861 /*
2862 * Get kernel address of each buffer.
2863 */
2864 for (i = 0; i < q->num_buffers; i++) {
2865 fileio->bufs[i].vaddr = vb2_plane_vaddr(q->bufs[i], 0);
5dd6946c
WY
2866 if (fileio->bufs[i].vaddr == NULL) {
2867 ret = -EINVAL;
b25748fe 2868 goto err_reqbufs;
5dd6946c 2869 }
b25748fe
MS
2870 fileio->bufs[i].size = vb2_plane_size(q->bufs[i], 0);
2871 }
2872
2873 /*
2874 * Read mode requires pre queuing of all buffers.
2875 */
2876 if (read) {
7bb6edd3
HV
2877 bool is_multiplanar = V4L2_TYPE_IS_MULTIPLANAR(q->type);
2878
b25748fe
MS
2879 /*
2880 * Queue all buffers.
2881 */
2882 for (i = 0; i < q->num_buffers; i++) {
2883 struct v4l2_buffer *b = &fileio->b;
7bb6edd3 2884
b25748fe
MS
2885 memset(b, 0, sizeof(*b));
2886 b->type = q->type;
7bb6edd3
HV
2887 if (is_multiplanar) {
2888 memset(&fileio->p, 0, sizeof(fileio->p));
2889 b->m.planes = &fileio->p;
2890 b->length = 1;
2891 }
b25748fe
MS
2892 b->memory = q->memory;
2893 b->index = i;
74753cff 2894 ret = vb2_internal_qbuf(q, b);
b25748fe
MS
2895 if (ret)
2896 goto err_reqbufs;
2897 fileio->bufs[i].queued = 1;
2898 }
4e5a4d8a
HV
2899 /*
2900 * All buffers have been queued, so mark that by setting
2901 * initial_index to q->num_buffers
2902 */
2903 fileio->initial_index = q->num_buffers;
2904 fileio->cur_index = q->num_buffers;
b25748fe
MS
2905 }
2906
02f142ec
HV
2907 /*
2908 * Start streaming.
2909 */
74753cff 2910 ret = vb2_internal_streamon(q, q->type);
02f142ec
HV
2911 if (ret)
2912 goto err_reqbufs;
2913
b25748fe
MS
2914 return ret;
2915
2916err_reqbufs:
a67e1722 2917 fileio->req.count = 0;
74753cff 2918 __reqbufs(q, &fileio->req);
b25748fe
MS
2919
2920err_kfree:
74753cff 2921 q->fileio = NULL;
b25748fe
MS
2922 kfree(fileio);
2923 return ret;
2924}
2925
2926/**
2927 * __vb2_cleanup_fileio() - free resourced used by file io emulator
2928 * @q: videobuf2 queue
2929 */
2930static int __vb2_cleanup_fileio(struct vb2_queue *q)
2931{
2932 struct vb2_fileio_data *fileio = q->fileio;
2933
2934 if (fileio) {
b2f2f047 2935 vb2_internal_streamoff(q, q->type);
b25748fe 2936 q->fileio = NULL;
b25748fe
MS
2937 fileio->req.count = 0;
2938 vb2_reqbufs(q, &fileio->req);
2939 kfree(fileio);
2940 dprintk(3, "file io emulator closed\n");
2941 }
2942 return 0;
2943}
2944
2945/**
2946 * __vb2_perform_fileio() - perform a single file io (read or write) operation
2947 * @q: videobuf2 queue
2948 * @data: pointed to target userspace buffer
2949 * @count: number of bytes to read or write
2950 * @ppos: file handle position tracking pointer
2951 * @nonblock: mode selector (1 means blocking calls, 0 means nonblocking)
2952 * @read: access mode selector (1 means read, 0 means write)
2953 */
2954static size_t __vb2_perform_fileio(struct vb2_queue *q, char __user *data, size_t count,
2955 loff_t *ppos, int nonblock, int read)
2956{
2957 struct vb2_fileio_data *fileio;
2958 struct vb2_fileio_buf *buf;
7bb6edd3 2959 bool is_multiplanar = V4L2_TYPE_IS_MULTIPLANAR(q->type);
ebd7c505
HV
2960 /*
2961 * When using write() to write data to an output video node the vb2 core
2962 * should set timestamps if V4L2_BUF_FLAG_TIMESTAMP_COPY is set. Nobody
2963 * else is able to provide this information with the write() operation.
2964 */
2965 bool set_timestamp = !read &&
2966 (q->timestamp_flags & V4L2_BUF_FLAG_TIMESTAMP_MASK) ==
2967 V4L2_BUF_FLAG_TIMESTAMP_COPY;
b25748fe
MS
2968 int ret, index;
2969
fd4354cf 2970 dprintk(3, "mode %s, offset %ld, count %zd, %sblocking\n",
b25748fe
MS
2971 read ? "read" : "write", (long)*ppos, count,
2972 nonblock ? "non" : "");
2973
2974 if (!data)
2975 return -EINVAL;
2976
2977 /*
2978 * Initialize emulator on first call.
2979 */
74753cff 2980 if (!vb2_fileio_is_active(q)) {
b25748fe 2981 ret = __vb2_init_fileio(q, read);
fd4354cf 2982 dprintk(3, "vb2_init_fileio result: %d\n", ret);
b25748fe
MS
2983 if (ret)
2984 return ret;
2985 }
2986 fileio = q->fileio;
2987
b25748fe
MS
2988 /*
2989 * Check if we need to dequeue the buffer.
2990 */
4e5a4d8a 2991 index = fileio->cur_index;
88e26870 2992 if (index >= q->num_buffers) {
b25748fe
MS
2993 /*
2994 * Call vb2_dqbuf to get buffer back.
2995 */
2996 memset(&fileio->b, 0, sizeof(fileio->b));
2997 fileio->b.type = q->type;
2998 fileio->b.memory = q->memory;
7bb6edd3
HV
2999 if (is_multiplanar) {
3000 memset(&fileio->p, 0, sizeof(fileio->p));
3001 fileio->b.m.planes = &fileio->p;
3002 fileio->b.length = 1;
3003 }
b2f2f047 3004 ret = vb2_internal_dqbuf(q, &fileio->b, nonblock);
fd4354cf 3005 dprintk(5, "vb2_dqbuf result: %d\n", ret);
b25748fe 3006 if (ret)
b2f2f047 3007 return ret;
b25748fe
MS
3008 fileio->dq_count += 1;
3009
4e5a4d8a 3010 fileio->cur_index = index = fileio->b.index;
88e26870
HV
3011 buf = &fileio->bufs[index];
3012
b25748fe
MS
3013 /*
3014 * Get number of bytes filled by the driver
3015 */
88e26870 3016 buf->pos = 0;
b25748fe 3017 buf->queued = 0;
88e26870
HV
3018 buf->size = read ? vb2_get_plane_payload(q->bufs[index], 0)
3019 : vb2_plane_size(q->bufs[index], 0);
529a53c6
HV
3020 /* Compensate for data_offset on read in the multiplanar case. */
3021 if (is_multiplanar && read &&
3022 fileio->b.m.planes[0].data_offset < buf->size) {
3023 buf->pos = fileio->b.m.planes[0].data_offset;
3024 buf->size -= buf->pos;
3025 }
88e26870
HV
3026 } else {
3027 buf = &fileio->bufs[index];
b25748fe
MS
3028 }
3029
3030 /*
3031 * Limit count on last few bytes of the buffer.
3032 */
3033 if (buf->pos + count > buf->size) {
3034 count = buf->size - buf->pos;
08b99e26 3035 dprintk(5, "reducing read count: %zd\n", count);
b25748fe
MS
3036 }
3037
3038 /*
3039 * Transfer data to userspace.
3040 */
fd4354cf 3041 dprintk(3, "copying %zd bytes - buffer %d, offset %u\n",
b25748fe
MS
3042 count, index, buf->pos);
3043 if (read)
3044 ret = copy_to_user(data, buf->vaddr + buf->pos, count);
3045 else
3046 ret = copy_from_user(buf->vaddr + buf->pos, data, count);
3047 if (ret) {
fd4354cf 3048 dprintk(3, "error copying data\n");
b2f2f047 3049 return -EFAULT;
b25748fe
MS
3050 }
3051
3052 /*
3053 * Update counters.
3054 */
3055 buf->pos += count;
3056 *ppos += count;
3057
3058 /*
3059 * Queue next buffer if required.
3060 */
06e7a9b6 3061 if (buf->pos == buf->size || (!read && fileio->write_immediately)) {
b25748fe
MS
3062 /*
3063 * Check if this is the last buffer to read.
3064 */
06e7a9b6 3065 if (read && fileio->read_once && fileio->dq_count == 1) {
fd4354cf 3066 dprintk(3, "read limit reached\n");
b25748fe
MS
3067 return __vb2_cleanup_fileio(q);
3068 }
3069
3070 /*
3071 * Call vb2_qbuf and give buffer to the driver.
3072 */
3073 memset(&fileio->b, 0, sizeof(fileio->b));
3074 fileio->b.type = q->type;
3075 fileio->b.memory = q->memory;
3076 fileio->b.index = index;
3077 fileio->b.bytesused = buf->pos;
7bb6edd3
HV
3078 if (is_multiplanar) {
3079 memset(&fileio->p, 0, sizeof(fileio->p));
3080 fileio->p.bytesused = buf->pos;
3081 fileio->b.m.planes = &fileio->p;
3082 fileio->b.length = 1;
3083 }
ebd7c505
HV
3084 if (set_timestamp)
3085 v4l2_get_timestamp(&fileio->b.timestamp);
b2f2f047 3086 ret = vb2_internal_qbuf(q, &fileio->b);
fd4354cf 3087 dprintk(5, "vb2_dbuf result: %d\n", ret);
b25748fe 3088 if (ret)
b2f2f047 3089 return ret;
b25748fe
MS
3090
3091 /*
3092 * Buffer has been queued, update the status
3093 */
3094 buf->pos = 0;
3095 buf->queued = 1;
88e26870 3096 buf->size = vb2_plane_size(q->bufs[index], 0);
b25748fe 3097 fileio->q_count += 1;
4e5a4d8a
HV
3098 /*
3099 * If we are queuing up buffers for the first time, then
3100 * increase initial_index by one.
3101 */
3102 if (fileio->initial_index < q->num_buffers)
3103 fileio->initial_index++;
3104 /*
3105 * The next buffer to use is either a buffer that's going to be
3106 * queued for the first time (initial_index < q->num_buffers)
3107 * or it is equal to q->num_buffers, meaning that the next
3108 * time we need to dequeue a buffer since we've now queued up
3109 * all the 'first time' buffers.
3110 */
3111 fileio->cur_index = fileio->initial_index;
b25748fe
MS
3112 }
3113
3114 /*
3115 * Return proper number of bytes processed.
3116 */
3117 if (ret == 0)
3118 ret = count;
b25748fe
MS
3119 return ret;
3120}
3121
3122size_t vb2_read(struct vb2_queue *q, char __user *data, size_t count,
3123 loff_t *ppos, int nonblocking)
3124{
3125 return __vb2_perform_fileio(q, data, count, ppos, nonblocking, 1);
3126}
3127EXPORT_SYMBOL_GPL(vb2_read);
3128
819585bc 3129size_t vb2_write(struct vb2_queue *q, const char __user *data, size_t count,
b25748fe
MS
3130 loff_t *ppos, int nonblocking)
3131{
819585bc
RR
3132 return __vb2_perform_fileio(q, (char __user *) data, count,
3133 ppos, nonblocking, 0);
b25748fe
MS
3134}
3135EXPORT_SYMBOL_GPL(vb2_write);
3136
3415a89f
HV
3137struct vb2_threadio_data {
3138 struct task_struct *thread;
3139 vb2_thread_fnc fnc;
3140 void *priv;
3141 bool stop;
3142};
3143
3144static int vb2_thread(void *data)
3145{
3146 struct vb2_queue *q = data;
3147 struct vb2_threadio_data *threadio = q->threadio;
3148 struct vb2_fileio_data *fileio = q->fileio;
3149 bool set_timestamp = false;
3150 int prequeue = 0;
3151 int index = 0;
3152 int ret = 0;
3153
3154 if (V4L2_TYPE_IS_OUTPUT(q->type)) {
3155 prequeue = q->num_buffers;
3156 set_timestamp =
3157 (q->timestamp_flags & V4L2_BUF_FLAG_TIMESTAMP_MASK) ==
3158 V4L2_BUF_FLAG_TIMESTAMP_COPY;
3159 }
3160
3161 set_freezable();
3162
3163 for (;;) {
3164 struct vb2_buffer *vb;
3165
3166 /*
3167 * Call vb2_dqbuf to get buffer back.
3168 */
3169 memset(&fileio->b, 0, sizeof(fileio->b));
3170 fileio->b.type = q->type;
3171 fileio->b.memory = q->memory;
3172 if (prequeue) {
3173 fileio->b.index = index++;
3174 prequeue--;
3175 } else {
3176 call_void_qop(q, wait_finish, q);
6cf11ee6
HV
3177 if (!threadio->stop)
3178 ret = vb2_internal_dqbuf(q, &fileio->b, 0);
3415a89f
HV
3179 call_void_qop(q, wait_prepare, q);
3180 dprintk(5, "file io: vb2_dqbuf result: %d\n", ret);
3181 }
6cf11ee6 3182 if (ret || threadio->stop)
3415a89f
HV
3183 break;
3184 try_to_freeze();
3185
3186 vb = q->bufs[fileio->b.index];
3187 if (!(fileio->b.flags & V4L2_BUF_FLAG_ERROR))
6cf11ee6
HV
3188 if (threadio->fnc(vb, threadio->priv))
3189 break;
3415a89f
HV
3190 call_void_qop(q, wait_finish, q);
3191 if (set_timestamp)
3192 v4l2_get_timestamp(&fileio->b.timestamp);
6cf11ee6
HV
3193 if (!threadio->stop)
3194 ret = vb2_internal_qbuf(q, &fileio->b);
3415a89f 3195 call_void_qop(q, wait_prepare, q);
6cf11ee6 3196 if (ret || threadio->stop)
3415a89f
HV
3197 break;
3198 }
3199
3200 /* Hmm, linux becomes *very* unhappy without this ... */
3201 while (!kthread_should_stop()) {
3202 set_current_state(TASK_INTERRUPTIBLE);
3203 schedule();
3204 }
3205 return 0;
3206}
3207
3208/*
3209 * This function should not be used for anything else but the videobuf2-dvb
3210 * support. If you think you have another good use-case for this, then please
3211 * contact the linux-media mailinglist first.
3212 */
3213int vb2_thread_start(struct vb2_queue *q, vb2_thread_fnc fnc, void *priv,
3214 const char *thread_name)
3215{
3216 struct vb2_threadio_data *threadio;
3217 int ret = 0;
3218
3219 if (q->threadio)
3220 return -EBUSY;
3221 if (vb2_is_busy(q))
3222 return -EBUSY;
3223 if (WARN_ON(q->fileio))
3224 return -EBUSY;
3225
3226 threadio = kzalloc(sizeof(*threadio), GFP_KERNEL);
3227 if (threadio == NULL)
3228 return -ENOMEM;
3229 threadio->fnc = fnc;
3230 threadio->priv = priv;
3231
3232 ret = __vb2_init_fileio(q, !V4L2_TYPE_IS_OUTPUT(q->type));
3233 dprintk(3, "file io: vb2_init_fileio result: %d\n", ret);
3234 if (ret)
3235 goto nomem;
3236 q->threadio = threadio;
3237 threadio->thread = kthread_run(vb2_thread, q, "vb2-%s", thread_name);
3238 if (IS_ERR(threadio->thread)) {
3239 ret = PTR_ERR(threadio->thread);
3240 threadio->thread = NULL;
3241 goto nothread;
3242 }
3243 return 0;
3244
3245nothread:
3246 __vb2_cleanup_fileio(q);
3247nomem:
3248 kfree(threadio);
3249 return ret;
3250}
3251EXPORT_SYMBOL_GPL(vb2_thread_start);
3252
3253int vb2_thread_stop(struct vb2_queue *q)
3254{
3255 struct vb2_threadio_data *threadio = q->threadio;
3415a89f
HV
3256 int err;
3257
3258 if (threadio == NULL)
3259 return 0;
3415a89f 3260 threadio->stop = true;
0e661006
HV
3261 /* Wake up all pending sleeps in the thread */
3262 vb2_queue_error(q);
6cf11ee6 3263 err = kthread_stop(threadio->thread);
0e661006 3264 __vb2_cleanup_fileio(q);
3415a89f
HV
3265 threadio->thread = NULL;
3266 kfree(threadio);
3415a89f
HV
3267 q->threadio = NULL;
3268 return err;
3269}
3270EXPORT_SYMBOL_GPL(vb2_thread_stop);
4c1ffcaa
HV
3271
3272/*
3273 * The following functions are not part of the vb2 core API, but are helper
3274 * functions that plug into struct v4l2_ioctl_ops, struct v4l2_file_operations
3275 * and struct vb2_ops.
3276 * They contain boilerplate code that most if not all drivers have to do
3277 * and so they simplify the driver code.
3278 */
3279
3280/* The queue is busy if there is a owner and you are not that owner. */
3281static inline bool vb2_queue_is_busy(struct video_device *vdev, struct file *file)
3282{
3283 return vdev->queue->owner && vdev->queue->owner != file->private_data;
3284}
3285
3286/* vb2 ioctl helpers */
3287
3288int vb2_ioctl_reqbufs(struct file *file, void *priv,
3289 struct v4l2_requestbuffers *p)
3290{
3291 struct video_device *vdev = video_devdata(file);
3292 int res = __verify_memory_type(vdev->queue, p->memory, p->type);
3293
3294 if (res)
3295 return res;
3296 if (vb2_queue_is_busy(vdev, file))
3297 return -EBUSY;
3298 res = __reqbufs(vdev->queue, p);
3299 /* If count == 0, then the owner has released all buffers and he
3300 is no longer owner of the queue. Otherwise we have a new owner. */
3301 if (res == 0)
3302 vdev->queue->owner = p->count ? file->private_data : NULL;
3303 return res;
3304}
3305EXPORT_SYMBOL_GPL(vb2_ioctl_reqbufs);
3306
3307int vb2_ioctl_create_bufs(struct file *file, void *priv,
3308 struct v4l2_create_buffers *p)
3309{
3310 struct video_device *vdev = video_devdata(file);
3311 int res = __verify_memory_type(vdev->queue, p->memory, p->format.type);
3312
3313 p->index = vdev->queue->num_buffers;
3314 /* If count == 0, then just check if memory and type are valid.
3315 Any -EBUSY result from __verify_memory_type can be mapped to 0. */
3316 if (p->count == 0)
3317 return res != -EBUSY ? res : 0;
3318 if (res)
3319 return res;
3320 if (vb2_queue_is_busy(vdev, file))
3321 return -EBUSY;
3322 res = __create_bufs(vdev->queue, p);
3323 if (res == 0)
3324 vdev->queue->owner = file->private_data;
3325 return res;
3326}
3327EXPORT_SYMBOL_GPL(vb2_ioctl_create_bufs);
3328
3329int vb2_ioctl_prepare_buf(struct file *file, void *priv,
3330 struct v4l2_buffer *p)
3331{
3332 struct video_device *vdev = video_devdata(file);
3333
3334 if (vb2_queue_is_busy(vdev, file))
3335 return -EBUSY;
3336 return vb2_prepare_buf(vdev->queue, p);
3337}
3338EXPORT_SYMBOL_GPL(vb2_ioctl_prepare_buf);
3339
3340int vb2_ioctl_querybuf(struct file *file, void *priv, struct v4l2_buffer *p)
3341{
3342 struct video_device *vdev = video_devdata(file);
3343
3344 /* No need to call vb2_queue_is_busy(), anyone can query buffers. */
3345 return vb2_querybuf(vdev->queue, p);
3346}
3347EXPORT_SYMBOL_GPL(vb2_ioctl_querybuf);
3348
3349int vb2_ioctl_qbuf(struct file *file, void *priv, struct v4l2_buffer *p)
3350{
3351 struct video_device *vdev = video_devdata(file);
3352
3353 if (vb2_queue_is_busy(vdev, file))
3354 return -EBUSY;
3355 return vb2_qbuf(vdev->queue, p);
3356}
3357EXPORT_SYMBOL_GPL(vb2_ioctl_qbuf);
3358
3359int vb2_ioctl_dqbuf(struct file *file, void *priv, struct v4l2_buffer *p)
3360{
3361 struct video_device *vdev = video_devdata(file);
3362
3363 if (vb2_queue_is_busy(vdev, file))
3364 return -EBUSY;
3365 return vb2_dqbuf(vdev->queue, p, file->f_flags & O_NONBLOCK);
3366}
3367EXPORT_SYMBOL_GPL(vb2_ioctl_dqbuf);
3368
3369int vb2_ioctl_streamon(struct file *file, void *priv, enum v4l2_buf_type i)
3370{
3371 struct video_device *vdev = video_devdata(file);
3372
3373 if (vb2_queue_is_busy(vdev, file))
3374 return -EBUSY;
3375 return vb2_streamon(vdev->queue, i);
3376}
3377EXPORT_SYMBOL_GPL(vb2_ioctl_streamon);
3378
3379int vb2_ioctl_streamoff(struct file *file, void *priv, enum v4l2_buf_type i)
3380{
3381 struct video_device *vdev = video_devdata(file);
3382
3383 if (vb2_queue_is_busy(vdev, file))
3384 return -EBUSY;
3385 return vb2_streamoff(vdev->queue, i);
3386}
3387EXPORT_SYMBOL_GPL(vb2_ioctl_streamoff);
3388
83ae7c5a
TS
3389int vb2_ioctl_expbuf(struct file *file, void *priv, struct v4l2_exportbuffer *p)
3390{
3391 struct video_device *vdev = video_devdata(file);
3392
3393 if (vb2_queue_is_busy(vdev, file))
3394 return -EBUSY;
3395 return vb2_expbuf(vdev->queue, p);
3396}
3397EXPORT_SYMBOL_GPL(vb2_ioctl_expbuf);
3398
4c1ffcaa
HV
3399/* v4l2_file_operations helpers */
3400
3401int vb2_fop_mmap(struct file *file, struct vm_area_struct *vma)
3402{
3403 struct video_device *vdev = video_devdata(file);
3404
f035eb4e 3405 return vb2_mmap(vdev->queue, vma);
4c1ffcaa
HV
3406}
3407EXPORT_SYMBOL_GPL(vb2_fop_mmap);
3408
1380f575 3409int _vb2_fop_release(struct file *file, struct mutex *lock)
4c1ffcaa
HV
3410{
3411 struct video_device *vdev = video_devdata(file);
3412
69c0e9c5
LP
3413 if (lock)
3414 mutex_lock(lock);
4c1ffcaa
HV
3415 if (file->private_data == vdev->queue->owner) {
3416 vb2_queue_release(vdev->queue);
3417 vdev->queue->owner = NULL;
3418 }
69c0e9c5
LP
3419 if (lock)
3420 mutex_unlock(lock);
4c1ffcaa
HV
3421 return v4l2_fh_release(file);
3422}
1380f575
RR
3423EXPORT_SYMBOL_GPL(_vb2_fop_release);
3424
3425int vb2_fop_release(struct file *file)
3426{
3427 struct video_device *vdev = video_devdata(file);
3428 struct mutex *lock = vdev->queue->lock ? vdev->queue->lock : vdev->lock;
3429
3430 return _vb2_fop_release(file, lock);
3431}
4c1ffcaa
HV
3432EXPORT_SYMBOL_GPL(vb2_fop_release);
3433
819585bc 3434ssize_t vb2_fop_write(struct file *file, const char __user *buf,
4c1ffcaa
HV
3435 size_t count, loff_t *ppos)
3436{
3437 struct video_device *vdev = video_devdata(file);
3438 struct mutex *lock = vdev->queue->lock ? vdev->queue->lock : vdev->lock;
4c1ffcaa
HV
3439 int err = -EBUSY;
3440
ff05cb4b
HV
3441 if (!(vdev->queue->io_modes & VB2_WRITE))
3442 return -EINVAL;
cf533735 3443 if (lock && mutex_lock_interruptible(lock))
4c1ffcaa
HV
3444 return -ERESTARTSYS;
3445 if (vb2_queue_is_busy(vdev, file))
3446 goto exit;
3447 err = vb2_write(vdev->queue, buf, count, ppos,
3448 file->f_flags & O_NONBLOCK);
8c82c75c 3449 if (vdev->queue->fileio)
4c1ffcaa
HV
3450 vdev->queue->owner = file->private_data;
3451exit:
cf533735 3452 if (lock)
4c1ffcaa
HV
3453 mutex_unlock(lock);
3454 return err;
3455}
3456EXPORT_SYMBOL_GPL(vb2_fop_write);
3457
3458ssize_t vb2_fop_read(struct file *file, char __user *buf,
3459 size_t count, loff_t *ppos)
3460{
3461 struct video_device *vdev = video_devdata(file);
3462 struct mutex *lock = vdev->queue->lock ? vdev->queue->lock : vdev->lock;
4c1ffcaa
HV
3463 int err = -EBUSY;
3464
ff05cb4b
HV
3465 if (!(vdev->queue->io_modes & VB2_READ))
3466 return -EINVAL;
cf533735 3467 if (lock && mutex_lock_interruptible(lock))
4c1ffcaa
HV
3468 return -ERESTARTSYS;
3469 if (vb2_queue_is_busy(vdev, file))
3470 goto exit;
3471 err = vb2_read(vdev->queue, buf, count, ppos,
3472 file->f_flags & O_NONBLOCK);
8c82c75c 3473 if (vdev->queue->fileio)
4c1ffcaa
HV
3474 vdev->queue->owner = file->private_data;
3475exit:
cf533735 3476 if (lock)
4c1ffcaa
HV
3477 mutex_unlock(lock);
3478 return err;
3479}
3480EXPORT_SYMBOL_GPL(vb2_fop_read);
3481
3482unsigned int vb2_fop_poll(struct file *file, poll_table *wait)
3483{
3484 struct video_device *vdev = video_devdata(file);
3485 struct vb2_queue *q = vdev->queue;
3486 struct mutex *lock = q->lock ? q->lock : vdev->lock;
4c1ffcaa
HV
3487 unsigned res;
3488 void *fileio;
4c1ffcaa 3489
f6cee188
LP
3490 /*
3491 * If this helper doesn't know how to lock, then you shouldn't be using
3492 * it but you should write your own.
3493 */
3494 WARN_ON(!lock);
4c1ffcaa 3495
f6cee188 3496 if (lock && mutex_lock_interruptible(lock))
4c1ffcaa
HV
3497 return POLLERR;
3498
3499 fileio = q->fileio;
3500
3501 res = vb2_poll(vdev->queue, file, wait);
3502
3503 /* If fileio was started, then we have a new queue owner. */
f6cee188 3504 if (!fileio && q->fileio)
4c1ffcaa 3505 q->owner = file->private_data;
f6cee188 3506 if (lock)
4c1ffcaa
HV
3507 mutex_unlock(lock);
3508 return res;
3509}
3510EXPORT_SYMBOL_GPL(vb2_fop_poll);
3511
3512#ifndef CONFIG_MMU
3513unsigned long vb2_fop_get_unmapped_area(struct file *file, unsigned long addr,
3514 unsigned long len, unsigned long pgoff, unsigned long flags)
3515{
3516 struct video_device *vdev = video_devdata(file);
3517
f035eb4e 3518 return vb2_get_unmapped_area(vdev->queue, addr, len, pgoff, flags);
4c1ffcaa
HV
3519}
3520EXPORT_SYMBOL_GPL(vb2_fop_get_unmapped_area);
3521#endif
3522
3523/* vb2_ops helpers. Only use if vq->lock is non-NULL. */
3524
3525void vb2_ops_wait_prepare(struct vb2_queue *vq)
3526{
3527 mutex_unlock(vq->lock);
3528}
3529EXPORT_SYMBOL_GPL(vb2_ops_wait_prepare);
3530
3531void vb2_ops_wait_finish(struct vb2_queue *vq)
3532{
3533 mutex_lock(vq->lock);
3534}
3535EXPORT_SYMBOL_GPL(vb2_ops_wait_finish);
3536
e23ccc0a 3537MODULE_DESCRIPTION("Driver helper framework for Video for Linux 2");
95072084 3538MODULE_AUTHOR("Pawel Osciak <pawel@osciak.com>, Marek Szyprowski");
e23ccc0a 3539MODULE_LICENSE("GPL");
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